References

Aarseth & Binney 1978

Aarseth S. & Binney J. On the relaxation of galaxies and clusters from aspherical initial conditions. Mon. Not. Roy. Astron. Soc. 185, 227–244 (1978).

Abadi et al. 2010

Abadi M., Navarro J., Fardal M., Babul A., & Steinmetz M. Galaxy-induced transformation of dark matter haloes. Mon. Not. Roy. Astron. Soc. 407, 435–446 (2010).

Abbott et al. 2018

Abbott T., Abdalla F., Alarcon A., Aleksić J., Allam S., et al. Dark Energy Survey year 1 results: Cosmological constraints from galaxy clustering and weak lensing. Phys. Rev. D 98, 043526 (2018).

Adams 1925

Adams W. Tiie Relativity Displacement of the Spectral Lines in the Companion of Sirius. Proceedings of the National Academy of Science 11, 382–387 (1925).

Adelberger et al. 2003

Adelberger E., Heckel B., & Nelson A. Tests of the Gravitational Inverse-Square Law. Ann. Rev. Nucl. Part. Sci. 53, 77–121 (2003).

Adibekyan et al. 2012

Adibekyan V., Sousa S., Santos N., Delgado Mena E., González Hernández J., et al. Chemical abundances of 1111 FGK stars from the HARPS GTO planet search program. Galactic stellar populations and planets. Astron. & Astrophys. 545, A32 (2012).

Alcock et al. 2000

Alcock C., Allsman R., Alves D., Axelrod T., Becker A., et al. The MACHO Project: Microlensing Results from 5.7 Years of Large Magellanic Cloud Observations. Astrophys. J. 542, 281–307 (2000).

Andrews et al. 2017

Andrews B., Weinberg D., Schönrich R., & Johnson J. Inflow, Outflow, Yields, and Stellar Population Mixing in Chemical Evolution Models. Astrophys. J. 835, 224 (2017).

An & Evans 2006

An J. & Evans N. Galaxy Models with Tangentially Anisotropic Velocity Distributions. Astron. J. 131, 782–789 (2006).

Asplund et al. 2009

Asplund M., Grevesse N., Sauval A., & Scott P. The Chemical Composition of the Sun. Ann. Rev. Astron. Astrophys. 47, 481–522 (2009).

Bacon et al. 2010

Bacon R., Accardo M., Adjali L., Anwand H., Bauer S., et al. The MUSE second-generation VLT instrument. In Ground-based and Airborne Instrumentation for Astronomy III, volume 7735 of Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series, 773508. July 2010. doi:10.1117/12.856027.

Bacon et al. 2001

Bacon R., Copin Y., Monnet G., Miller B., Allington-Smith J., et al. The SAURON project - I. The panoramic integral-field spectrograph. Mon. Not. Roy. Astron. Soc. 326, 23–35 (2001).

Baes & Dejonghe 2002

Baes M. & Dejonghe H. The Hernquist model revisited: Completely analytical anisotropic dynamical models. Astron. & Astrophys. 393, 485–497 (2002).

Baes & Gentile 2011

Baes M. & Gentile G. Analytical expressions for the deprojected Sérsic model. Astron. & Astrophys. 525, A136 (2011).

Baes & van Hese 2011

Baes M. & van Hese E. Analytical expressions for the deprojected Sérsic model. II. General expressions in terms of the Fox H function. Astron. & Astrophys. 534, A69 (2011).

Baes 2020

Baes M. The Nuker model for galactic nuclei. Astron. & Astrophys. 634, A109 (2020).

Bahcall 1984

Bahcall J. Self-consistent determinations of the total amount of matter near the sun. Astrophys. J. 276, 169–181 (1984).

Bahcall & Wolf 1976

Bahcall J. & Wolf R. Star distribution around a massive black hole in a globular cluster. Astrophys. J. 209, 214–232 (1976).

Baillard et al. 2011

Baillard A., Bertin E., de Lapparent V., Fouqué P., Arnouts S., et al. The EFIGI catalogue of 4458 nearby galaxies with detailed morphology. Astron. & Astrophys. 532, A74 (2011).

Balbus & Hawley 1991

Balbus S. & Hawley J. A Powerful Local Shear Instability in Weakly Magnetized Disks. I. Linear Analysis. Astrophys. J. 376, 214 (1991).

Balbus & Hawley 1992

Balbus S. & Hawley J. Is the Oort A-Value a Universal Growth Rate Limit for Accretion Disk Shear Instabilities? Astrophys. J. 392, 662 (1992).

Barkana 1998

Barkana R. Fast Calculation of a Family of Elliptical Mass Gravitational Lens Models. Astrophys. J. 502, 531–537 (1998).

Barnabè et al. 2011

Barnabè M., Czoske O., Koopmans L., Treu T., & Bolton A. Two-dimensional kinematics of SLACS lenses - III. Mass structure and dynamics of early-type lens galaxies beyond z around 0.1. Mon. Not. Roy. Astron. Soc. 415, 2215–2232 (2011).

Barnes & Hut 1986

Barnes J. & Hut P. A hierarchical O(N log N) force-calculation algorithm. Nature 324, 446–449 (1986).

Bartelmann & Schneider 2001

Bartelmann M. & Schneider P. Weak gravitational lensing. Phys. Rep. 340, 291–472 (2001).

Beasley et al. 2016

Beasley M., Romanowsky A., Pota V., Navarro I., Martinez Delgado D., et al. An Overmassive Dark Halo around an Ultra-diffuse Galaxy in the Virgo Cluster. Astrophys. J.l 819, L20 (2016).

Bechtol et al. 2015

Bechtol K., Drlica-Wagner A., Balbinot E., Pieres A., Simon J., et al. Eight New Milky Way Companions Discovered in First-year Dark Energy Survey Data. Astrophys. J. 807, 50 (2015).

Begeman 1989

Begeman K. HI rotation curves of spiral galaxies. I. NGC 3198. Astron. & Astrophys. 223, 47–60 (1989).

Bell et al. 2008

Bell E., Zucker D., Belokurov V., Sharma S., Johnston K., et al. The Accretion Origin of the Milky Way's Stellar Halo. Astrophys. J. 680, 295–311 (2008).

Belokurov et al. 2007

Belokurov V., Zucker D., Evans N., Kleyna J., Koposov S., et al. Cats and Dogs, Hair and a Hero: A Quintet of New Milky Way Companions. Astrophys. J. 654, 897–906 (2007).

Bender 1988

Bender R. Rotating and counter-rotating cores in elliptical galaxies. Astron. & Astrophys. 202, L5–L8 (1988).

Bender et al. 1988

Bender R., Doebereiner S., & Moellenhoff C. Isophote shapes of elliptical galaxies. I. The data. Astron. & Astrophys. Supp. 74, 385–426 (1988).

Bender & Moellenhoff 1987

Bender R. & Moellenhoff C. Morphological analysis of massive early-type galaxies in the Virgo Cluster. Astron. & Astrophys. 177, 71–83 (1987).

Bender et al. 1994

Bender R., Saglia R., & Gerhard O. Line-of-sight velocity distributions of elliptical galaxies. Mon. Not. Roy. Astron. Soc. 269, 785–813 (1994).

Bennett & Bovy 2019

Bennett M. & Bovy J. Vertical waves in the solar neighbourhood in Gaia DR2. Mon. Not. Roy. Astron. Soc. 482, 1417–1425 (2019).

Bensby et al. 2007

Bensby T., Oey M., Feltzing S., & Gustafsson B. Disentangling the Hercules Stream. Astrophys. J.l 655, L89–L92 (2007).

Bensby et al. 2013

Bensby T., Yee J., Feltzing S., Johnson J., Gould A., et al. Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. V. Evidence for a wide age distribution and a complex MDF. Astron. & Astrophys. 549, A147 (2013).

Bergemann & Serenelli 2014

Bergemann M. & Serenelli A. Solar Abundance Problem, pages 245–258. Springer International Publishing, 2014. doi:10.1007/978-3-319-06956-2_21.

Bertola & Capaccioli 1975

Bertola F. & Capaccioli M. Dynamics of early type galaxies. I. The rotation curve of the elliptical galaxy NGC 4697. Astrophys. J. 200, 439–445 (1975).

Bertotti et al. 2003

Bertotti B., Iess L., & Tortora P. A test of general relativity using radio links with the Cassini spacecraft. Nature 425, 374–376 (2003).

Bertschinger 1985

Bertschinger E. Self-similar secondary infall and accretion in an Einstein-de Sitter universe. Astrophys. J. Supp. 58, 39–65 (1985).

Bertschinger 2011

Bertschinger E. One gravitational potential or two? Forecasts and tests. Philosophical Transactions of the Royal Society of London Series A 369, 4947–4961 (2011).

Bertschinger 1995

Bertschinger E. Cosmological dynamics. NASA STI/Recon Technical Report N, January 1995. arXiv:astro-ph/9503125.

Binney 1978a

Binney J. Elliptical galaxies: prolate, oblate or triaxial? Comments on Astrophysics 8, 27–36 (1978a).

Binney 1978b

Binney J. On the rotation of elliptical galaxies. Mon. Not. Roy. Astron. Soc. 183, 501–514 (1978b).

Binney 1985

Binney J. Testing for triaxiality with kinematic data. Mon. Not. Roy. Astron. Soc. 212, 767–781 (1985).

Binney & de Vaucouleurs 1981

Binney J. & de Vaucouleurs G. The apparent and true ellipticities of galaxies of different Hubble types in the Second Reference Catalogue. Mon. Not. Roy. Astron. Soc. 194, 679–691 (1981).

Binney & Mamon 1982

Binney J. & Mamon G. M/L and velocity anisotropy from observations of spherical galaxies, of must M 87 have a massive black hole ? Mon. Not. Roy. Astron. Soc. 200, 361–375 (1982).

Binney & Tremaine 2008

Binney J. & Tremaine S. Galactic Dynamics: Second Edition. Princeton University Press, Princeton, NJ (2008).

Binney et al. 1990

Binney J., Davies R., & Illingworth G. Velocity Mapping and Models of the Elliptical Galaxies NGC 720, NGC 1052, and NGC 4697. Astrophys. J. 361, 78 (1990).

Binney 2005

Binney J. Rotation and anisotropy of galaxies revisited. Mon. Not. Roy. Astron. Soc. 363, 937–942 (2005).

Binney 2010

Binney J. Distribution functions for the Milky Way. Mon. Not. Roy. Astron. Soc. 401, 2318–2330 (2010).

Binney 2012a

Binney J. Actions for axisymmetric potentials. Mon. Not. Roy. Astron. Soc. 426, 1324–1327 (2012a).

Binney 2012b

Binney J. More dynamical models of our Galaxy. Mon. Not. Roy. Astron. Soc. 426, 1328–1337 (2012b).

Binney & McMillan 2011

Binney J. & McMillan P. Models of our Galaxy - II. Mon. Not. Roy. Astron. Soc. 413, 1889–1898 (2011).

Binney & Merrifield 1998

Binney J. & Merrifield M. Galactic Astronomy. Princeton University Press, Princeton, NJ (1998).

Birrer et al. 2017

Birrer S., Welschen C., Amara A., & Refregier A. Line-of-sight effects in strong lensing: putting theory into practice. J. Cosmo & Astropart. Phys. 2017, 049 (2017).

Blandford & McKee 1982

Blandford R. & McKee C. Reverberation mapping of the emission line regions of Seyfert galaxies and quasars. Astrophys. J. 255, 419–439 (1982).

Blandford & Narayan 1986

Blandford R. & Narayan R. Fermat's Principle, Caustics, and the Classification of Gravitational Lens Images. Astrophys. J. 310, 568 (1986).

Blandford & Kochanek 1987

Blandford R. & Kochanek C. Gravitational Imaging by Isolated Elliptical Potential Wells. I. Cross Sections. Astrophys. J. 321, 658 (1987).

Blumenthal et al. 1986

Blumenthal G., Faber S., Flores R., & Primack J. Contraction of Dark Matter Galactic Halos Due to Baryonic Infall. Astrophys. J. 301, 27 (1986).

Bolton et al. 2008a

Bolton A., Burles S., Koopmans L., Treu T., Gavazzi R., et al. The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample. Astrophys. J. 682, 964–984 (2008a).

Bolton et al. 2006

Bolton A., Burles S., Koopmans L., Treu T., & Moustakas L. The Sloan Lens ACS Survey. I. A Large Spectroscopically Selected Sample of Massive Early-Type Lens Galaxies. Astrophys. J. 638, 703–724 (2006).

Bolton et al. 2008b

Bolton A., Treu T., Koopmans L., Gavazzi R., Moustakas L., et al. The Sloan Lens ACS Survey. VII. Elliptical Galaxy Scaling Laws from Direct Observational Mass Measurements. Astrophys. J. 684, 248–259 (2008b).

Bosma 1978

Bosma A. The distribution and kinematics of neutral hydrogen in spiral galaxies of various morphological types. PhD thesis, -, January 1978.

Boss 1908

Boss L. Convergent of a moving cluster in Taurus. Astron. J. 26, 31–36 (1908).

Bottema 1993

Bottema R. The stellar kinematics of galactic disks. Astron. & Astrophys. 275, 16–36 (1993).

Bourassa & Kantowski 1975

Bourassa R. & Kantowski R. The theory of transparent gravitational lenses. Astrophys. J. 195, 13–21 (1975).

Bours et al. 2013

Bours M., Toonen S., & Nelemans G. Single degenerate supernova type Ia progenitors. Studying the influence of different mass retention efficiencies. Astron. & Astrophys. 552, A24 (2013).

Bovy 2015

Bovy J. galpy: A python Library for Galactic Dynamics. Astrophys. J. Supp. 216, 29 (2015).

Bovy 2017a

Bovy J. Galactic rotation in Gaia DR1. Mon. Not. Roy. Astron. Soc. 468, L63–L67 (2017a).

Bovy 2017b

Bovy J. Stellar inventory of the solar neighbourhood using Gaia DR1. Mon. Not. Roy. Astron. Soc. 470, 1360–1387 (2017b).

Bovy & Hogg 2010

Bovy J. & Hogg D. The Velocity Distribution of Nearby Stars from Hipparcos Data. II. The Nature of the Low-velocity Moving Groups. Astrophys. J. 717, 617–639 (2010).

Bovy et al. 2009

Bovy J., Hogg D., & Roweis S. The Velocity Distribution of Nearby Stars from Hipparcos Data. I. The Significance of the Moving Groups. Astrophys. J. 700, 1794–1819 (2009).

Bovy & Rix 2013

Bovy J. & Rix H. A Direct Dynamical Measurement of the Milky Way's Disk Surface Density Profile, Disk Scale Length, and Dark Matter Profile at 4 kpc < R < 9 kpc. Astrophys. J. 779, 115 (2013).

Bovy et al. 2012

Bovy J., Rix H., & Hogg D. The Milky Way Has No Distinct Thick Disk. Astrophys. J. 751, 131 (2012).

Bovy et al. 2016

Bovy J., Rix H., Schlafly E., Nidever D., Holtzman J., et al. The Stellar Population Structure of the Galactic Disk. Astrophys. J. 823, 30 (2016).

Bovy & Tremaine 2012

Bovy J. & Tremaine S. On the Local Dark Matter Density. Astrophys. J. 756, 89 (2012).

Brainerd et al. 1996

Brainerd T., Blandford R., & Smail I. Weak Gravitational Lensing by Galaxies. Astrophys. J. 466, 623 (1996).

Brown & Papaloizou 1998

Brown M. & Papaloizou J. N-body simulations using customized potential-density pair basis sets. Mon. Not. Roy. Astron. Soc. 300, 135–145 (1998).

Bryan & Norman 1998

Bryan G. & Norman M. Statistical Properties of X-Ray Clusters: Analytic and Numerical Comparisons. Astrophys. J. 495, 80–99 (1998).

Buder et al. 2019

Buder S., Lind K., Ness M., Asplund M., Duong L., et al. The GALAH survey: An abundance, age, and kinematic inventory of the solar neighbourhood made with TGAS. Astron. & Astrophys. 624, A19 (2019).

Bundy et al. 2015

Bundy K., Bershady M., Law D., Yan R., Drory N., et al. Overview of the SDSS-IV MaNGA Survey: Mapping nearby Galaxies at Apache Point Observatory. Astrophys. J. 798, 7 (2015).

Burbidge et al. 1957

Burbidge E., Burbidge G., Fowler W., & Hoyle F. Synthesis of the Elements in Stars. Reviews of Modern Physics 29, 547–650 (1957).

Burke 1981

Burke W. Multiple Gravitational Imaging by Distributed Masses. Astrophys. J.l 244, L1 (1981).

Busha et al. 2005

Busha M., Evrard A., Adams F., & Wechsler R. The ultimate halo mass in a LCDM universe. Mon. Not. Roy. Astron. Soc. 363, L11–L15 (2005).

Byun et al. 1996

Byun Y., Grillmair C., Faber S., Ajhar E., Dressler A., et al. The Centers of Early-Type Galaxies With HST. II. Empirical Models and Structural Parameters. Astron. J. 111, 1889 (1996).

Canameras et al. 2020

Canameras R., Schuldt S., Suyu S., Taubenberger S., Meinhardt T., et al. HOLISMOKES. II. Identifying galaxy-scale strong gravitational lenses in Pan-STARRS using convolutional neural networks. Astron. & Astrophys. 644, A163 (2020).

Candes et al. 2006

Candes E., Romberg J., & Tao T. Robust uncertainty principles: exact signal reconstruction from highly incomplete frequency information. IEEE Transactions on Information Theory 52, 489–509 (2006).

Cappellari 2002

Cappellari M. Efficient multi-Gaussian expansion of galaxies. Mon. Not. Roy. Astron. Soc. 333, 400–410 (2002).

Cappellari 2008

Cappellari M. Measuring the inclination and mass-to-light ratio of axisymmetric galaxies via anisotropic Jeans models of stellar kinematics. Mon. Not. Roy. Astron. Soc. 390, 71–86 (2008).

Cappellari 2016

Cappellari M. Structure and Kinematics of Early-Type Galaxies from Integral Field Spectroscopy. Ann. Rev. Astron. Astrophys. 54, 597–665 (2016).

Cappellari et al. 2006

Cappellari M., Bacon R., Bureau M., Damen M., Davies R., et al. The SAURON project - IV. The mass-to-light ratio, the virial mass estimator and the Fundamental Plane of elliptical and lenticular galaxies. Mon. Not. Roy. Astron. Soc. 366, 1126–1150 (2006).

Cappellari et al. 2007

Cappellari M., Emsellem E., Bacon R., Bureau M., Davies R., et al. The SAURON project - X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics. Mon. Not. Roy. Astron. Soc. 379, 418–444 (2007).

Cappellari et al. 2011

Cappellari M., Emsellem E., Krajnović D., McDermid R., Scott N., et al. The ATLAS$^3D$ project - I. A volume-limited sample of 260 nearby early-type galaxies: science goals and selection criteria. Mon. Not. Roy. Astron. Soc. 413, 813–836 (2011).

Cappellari et al. 2012

Cappellari M., McDermid R., Alatalo K., Blitz L., Bois M., et al. Systematic variation of the stellar initial mass function in early-type galaxies. Nature 484, 485–488 (2012).

Cappellari et al. 2015

Cappellari M., Romanowsky A., Brodie J., Forbes D., Strader J., et al. Small Scatter and Nearly Isothermal Mass Profiles to Four Half-light Radii from Two-dimensional Stellar Dynamics of Early-type Galaxies. Astrophys. J.l 804, L21 (2015).

Carroll 2004

Carroll S. Spacetime and geometry. An introduction to general relativity. Addison Wesley, San Francisco, CA, USA (2004).

Carroll et al. 1992

Carroll S., Press W., & Turner E. The cosmological constant. Ann. Rev. Astron. Astrophys. 30, 499–542 (1992).

Chabrier 2003

Chabrier G. Galactic Stellar and Substellar Initial Mass Function. Pub. Astron. Soc. Pac. 115, 763–795 (2003).

Chandrasekhar 1931

Chandrasekhar S. The Maximum Mass of Ideal White Dwarfs. Astrophys. J. 74, 81 (1931).

Chandrasekhar 1939

Chandrasekhar S. An introduction to the study of stellar structure. University of Chicago Press, USA (1939).

Chandrasekhar 1969

Chandrasekhar S. Ellipsoidal figures of equilibrium. The Silliman Foundation Lectures: Yale University Press, New Haven (1969).

Chang & Refsdal 1979

Chang K. & Refsdal S. Flux variations of QSO 0957 + 561 A, B and image splitting by stars near the light path. Nature 282, 561–564 (1979).

Chemin et al. 2015

Chemin L., Renaud F., & Soubiran C. Incorrect rotation curve of the Milky Way. Astron. & Astrophys. 578, A14 (2015).

Chieffi & Limongi 2004

Chieffi A. & Limongi M. Explosive Yields of Massive Stars from Z = 0 to Z = Zsolar. Astrophys. J. 608, 405–410 (2004).

Chokshi & Turner 1992

Chokshi A. & Turner E. Remnants of the quasars. Mon. Not. Roy. Astron. Soc. 259, 421–424 (1992).

Chua et al. 2019

Chua K., Pillepich A., Vogelsberger M., & Hernquist L. Shape of dark matter haloes in the Illustris simulation: effects of baryons. Mon. Not. Roy. Astron. Soc. 484, 476–493 (2019).

Chwolson 1924

Chwolson O. Über eine mögliche Form fiktiver Doppelsterne. Astronomische Nachrichten 221, 329 (1924).

Ciotti 1991

Ciotti L. Stellar systems following the R1/m luminosity law. Astron. & Astrophys. 249, 99–106 (1991).

Ciotti & Bertin 1999

Ciotti L. & Bertin G. Analytical properties of the R1/m law. Astron. & Astrophys. 352, 447–451 (1999).

Clutton-Brock 1972

Clutton-Brock M. The Gravitational Field of Flat Galaxies. Astrophys. & Space Sci. 16, 101–119 (1972).

Clutton-Brock 1973

Clutton-Brock M. The Gravitational Field of Three Dimensional Galaxies. Astrophys. & Space Sci. 23, 55–69 (1973).

Collett et al. 2018

Collett T., Oldham L., Smith R., Auger M., Westfall K., et al. A precise extragalactic test of General Relativity. Science 360, 1342–1346 (2018).

Colombi & Touma 2014

Colombi S. & Touma J. Vlasov-Poisson in 1D: waterbags. Mon. Not. Roy. Astron. Soc. 441, 2414–2432 (2014).

Conroy et al. 2014

Conroy C., Graves G., & van Dokkum P. Early-type Galaxy Archeology: Ages, Abundance Ratios, and Effective Temperatures from Full-spectrum Fitting. Astrophys. J. 780, 33 (2014).

Conroy & van Dokkum 2012

Conroy C. & van Dokkum P. The Stellar Initial Mass Function in Early-type Galaxies From Absorption Line Spectroscopy. II. Results. Astrophys. J. 760, 71 (2012).

Contopoulos 1956

Contopoulos G. On the Isophotes of Ellipsoidal Nebulae. With 1 Figure. ZeitSch. Astrophys. 39, 126 (1956).

Courant & Hilbert 1953

Courant R. & Hilbert D. Methods of mathematical physics - Vol.1; Vol.2. Interscience Publication, New York (1953).

Courteau et al. 2011

Courteau S., Widrow L., McDonald M., Guhathakurta P., Gilbert K., et al. The Luminosity Profile and Structural Parameters of the Andromeda Galaxy. Astrophys. J. 739, 20 (2011).

Crane et al. 1993

Crane P., Stiavelli M., King I., Deharveng J., Albrecht R., et al. High Resolution Imaging of Galaxy Cores. Astron. J. 106, 1371 (1993).

Cretton et al. 1999

Cretton N., de Zeeuw P., van der Marel R., & Rix H. Axisymmetric Three-Integral Models for Galaxies. Astrophys. J. Supp. 124, 383–401 (1999).

Cretton & van den Bosch 1999

Cretton N. & van den Bosch F. Evidence for a Massive Black Hole in the S0 Galaxy NGC 4342. Astrophys. J. 514, 704–724 (1999).

Croom et al. 2012

Croom S., Lawrence J., Bland-Hawthorn J., Bryant J., Fogarty L., et al. The Sydney-AAO Multi-object Integral field spectrograph. Mon. Not. Roy. Astron. Soc. 421, 872–893 (2012).

Croton et al. 2006

Croton D., Springel V., White S., De Lucia G., Frenk C., et al. The many lives of active galactic nuclei: cooling flows, black holes and the luminosities and colours of galaxies. Mon. Not. Roy. Astron. Soc. 365, 11–28 (2006).

Cuddeford 1991

Cuddeford P. An analytic inversion for anisotropic spherical galaxies. Mon. Not. Roy. Astron. Soc. 253, 414–426 (1991).

Cuperman et al. 1969

Cuperman S., Goldstein S., & Lecar M. Numerical experimental check of Lynden-Bell statistics-II. The core-halo structure and the role of the violent relaxation. Mon. Not. Roy. Astron. Soc. 146, 161 (1969).

Dai et al. 2018

Dai B., Robertson B., & Madau P. Around the Way: Testing LCDM with Milky Way Stellar Stream Constraints. Astrophys. J. 858, 73 (2018).

Dalal & Kochanek 2002

Dalal N. & Kochanek C. Direct Detection of Cold Dark Matter Substructure. Astrophys. J. 572, 25–33 (2002).

de Blok et al. 2008

de Blok W., Walter F., Brinks E., Trachternach C., Oh S., et al. High-Resolution Rotation Curves and Galaxy Mass Models from THINGS. Astron. J. 136, 2648–2719 (2008).

de Lorenzi et al. 2008

de Lorenzi F., Gerhard O., Saglia R., Sambhus N., Debattista V., et al. Dark matter content and internal dynamics of NGC 4697: NMAGIC particle models from slit data and planetary nebula velocities. Mon. Not. Roy. Astron. Soc. 385, 1729–1748 (2008).

De Simone et al. 2004

De Simone R., Wu X., & Tremaine S. The stellar velocity distribution in the solar neighbourhood. Mon. Not. Roy. Astron. Soc. 350, 627–643 (2004).

de Vaucouleurs 1948

de Vaucouleurs G. Recherches sur les Nebuleuses Extragalactiques. Annales d'Astrophysique 11, 247 (1948).

de Zeeuw et al. 2002

de Zeeuw P., Bureau M., Emsellem E., Bacon R., Carollo C., et al. The SAURON project - II. Sample and early results. Mon. Not. Roy. Astron. Soc. 329, 513–530 (2002).

de Zeeuw & Lynden-Bell 1985

de Zeeuw P. & Lynden-Bell D. Best approximate quadratic integrals in stellar dynamics. Mon. Not. Roy. Astron. Soc. 215, 713–730 (1985).

de Zeeuw 1985

de Zeeuw T. Elliptical galaxies with separable potentials. Mon. Not. Roy. Astron. Soc. 216, 273–334 (1985).

Deason et al. 2013

Deason A., Van der Marel R., Guhathakurta P., Sohn S., & Brown T. The Velocity Anisotropy of Distant Milky Way Halo Stars from Hubble Space Telescope Proper Motions. Astrophys. J. 766, 24 (2013).

Debattista et al. 2008

Debattista V., Moore B., Quinn T., Kazantzidis S., Maas R., et al. The Causes of Halo Shape Changes Induced by Cooling Baryons: Disks versus Substructures. Astrophys. J. 681, 1076–1088 (2008).

Dehnen 1993

Dehnen W. A Family of Potential-Density Pairs for Spherical Galaxies and Bulges. Mon. Not. Roy. Astron. Soc. 265, 250 (1993).

Dehnen & Read 2011

Dehnen W. & Read J. N-body simulations of gravitational dynamics. European Physical Journal Plus 126, 55 (2011).

Dehnen 1998

Dehnen W. The Distribution of Nearby Stars in Velocity Space Inferred from HIPPARCOS Data. Astron. J. 115, 2384–2396 (1998).

Dehnen 1999

Dehnen W. Simple Distribution Functions for Stellar Disks. Astron. J. 118, 1201–1208 (1999).

Dehnen 2000

Dehnen W. The Effect of the Outer Lindblad Resonance of the Galactic Bar on the Local Stellar Velocity Distribution. Astron. J. 119, 800–812 (2000).

Dehnen 2001

Dehnen W. Towards optimal softening in three-dimensional N-body codes - I. Minimizing the force error. Mon. Not. Roy. Astron. Soc. 324, 273–291 (2001).

Dehnen 2014

Dehnen W. A fast multipole method for stellar dynamics. Computational Astrophysics and Cosmology 1, 1 (2014).

Dehnen & Binney 1998

Dehnen W. & Binney J. Local stellar kinematics from HIPPARCOS data. Mon. Not. Roy. Astron. Soc. 298, 387–394 (1998).

Dejonghe 1986

Dejonghe H. Stellar dynamics and the description of stellar systems. Phys. Rep. 133, 217–313 (1986).

Dekel et al. 2009

Dekel A., Birnboim Y., Engel G., Freundlich J., Goerdt T., et al. Cold streams in early massive hot haloes as the main mode of galaxy formation. Nature 457, 451–454 (2009).

Di Matteo et al. 2005

Di Matteo T., Springel V., & Hernquist L. Energy input from quasars regulates the growth and activity of black holes and their host galaxies. Nature 433, 604–607 (2005).

Diemand et al. 2004

Diemand J., Moore B., & Stadel J. Velocity and spatial biases in cold dark matter subhalo distributions. Mon. Not. Roy. Astron. Soc. 352, 535–546 (2004).

Djorgovski & Davis 1987

Djorgovski S. & Davis M. Fundamental Properties of Elliptical Galaxies. Astrophys. J. 313, 59 (1987).

Dodelson & Schmidt 2020

Dodelson S. & Schmidt F. Modern Cosmology, 2nd edition. Academic Press, Cambridge, Massachusetts (2020).

Do et al. 2019

Do T., Hees A., Ghez A., Martinez G., Chu D., et al. Relativistic redshift of the star S0-2 orbiting the Galactic Center supermassive black hole. Science 365, 664–668 (2019).

Dressler et al. 1987

Dressler A., Lynden-Bell D., Burstein D., Davies R., Faber S., et al. Spectroscopy and Photometry of Elliptical Galaxies. I. New Distance Estimator. Astrophys. J. 313, 42 (1987).

Drout et al. 2017

Drout M., Piro A., Shappee B., Kilpatrick C., Simon J., et al. Light curves of the neutron star merger GW170817/SSS17a: Implications for r-process nucleosynthesis. Science 358, 1570–1574 (2017).

Dubinski 1994

Dubinski J. The Effect of Dissipation on the Shapes of Dark Halos. Astrophys. J. 431, 617 (1994).

Dubinski & Carlberg 1991

Dubinski J. & Carlberg R. The Structure of Cold Dark Matter Halos. Astrophys. J. 378, 496 (1991).

Dutton & Macciò 2014

Dutton A. & Macciò A. Cold dark matter haloes in the Planck era: evolution of structural parameters for Einasto and NFW profiles. Mon. Not. Roy. Astron. Soc. 441, 3359–3374 (2014).

Dyson et al. 1920

Dyson F., Eddington A., & Davidson C. A Determination of the Deflection of Light by the Sun's Gravitational Field, from Observations Made at the Total Eclipse of May 29, 1919. Philosophical Transactions of the Royal Society of London Series A 220, 291–333 (1920).

Earn 1996

Earn D. Potential-Density Basis Sets for Galactic Disks. Astrophys. J. 465, 91 (1996).

Eddington 1916

Eddington A. The distribution of stars in globular clusters. Mon. Not. Roy. Astron. Soc. 76, 572–585 (1916).

Eddington 1919

Eddington A. The total eclipse of 1919 May 29 and the influence of gravitation on light. The Observatory 42, 119–122 (1919).

Eddington 1920

Eddington A. Space, time and gravitation. Cambridge: University Press, Cambridge, Uk (1920).

Eggen 1970

Eggen O. Chemical Homogenity and Absolute Magnitudes of Members of the Hyades and Wolf 630 Groups. Pub. Astron. Soc. Pac. 82, 99 (1970).

Eggen et al. 1962

Eggen O., Lynden-Bell D., & Sandage A. Evidence from the motions of old stars that the Galaxy collapsed. Astrophys. J. 136, 748 (1962).

Einstein 1905

Einstein A. Zur Elektrodynamik bewegter Körper. Annalen der Physik 322, 891–921 (1905).

Einstein 1911

Einstein A. Über den Einfluß der Schwerkraft auf die Ausbreitung des Lichtes. Annalen der Physik 340, 898–908 (1911).

Einstein 1916

Einstein A. Die Grundlage der allgemeinen Relativitätstheorie. Annalen der Physik 354, 769–822 (1916).

Einstein 1936

Einstein A. Lens-Like Action of a Star by the Deviation of Light in the Gravitational Field. Science 84, 506–507 (1936).

Eisenstein et al. 2001

Eisenstein D., Annis J., Gunn J., Szalay A., Connolly A., et al. Spectroscopic Target Selection for the Sloan Digital Sky Survey: The Luminous Red Galaxy Sample. Astron. J. 122, 2267–2280 (2001).

Emsellem et al. 1994

Emsellem E., Monnet G., & Bacon R. The multi-gaussian expansion method: a tool for building realistic photometric and kinematical models of stellar systems I. The formalism. Astron. & Astrophys. 285, 723–738 (1994).

Emsellem et al. 2011

Emsellem E., Cappellari M., Krajnović D., Alatalo K., Blitz L., et al. The ATLAS$^3D$ project - III. A census of the stellar angular momentum within the effective radius of early-type galaxies: unveiling the distribution of fast and slow rotators. Mon. Not. Roy. Astron. Soc. 414, 888–912 (2011).

Emsellem et al. 2007

Emsellem E., Cappellari M., Krajnović D., van de Ven G., Bacon R., et al. The SAURON project - IX. A kinematic classification for early-type galaxies. Mon. Not. Roy. Astron. Soc. 379, 401–417 (2007).

Emsellem et al. 2004

Emsellem E., Cappellari M., Peletier R., McDermid R., Bacon R., et al. The SAURON project - III. Integral-field absorption-line kinematics of 48 elliptical and lenticular galaxies. Mon. Not. Roy. Astron. Soc. 352, 721–743 (2004).

Faber et al. 1997

Faber S., Tremaine S., Ajhar E., Byun Y., Dressler A., et al. The Centers of Early-Type Galaxies with HST. IV. Central Parameter Relations. Astron. J. 114, 1771 (1997).

Falco et al. 1985

Falco E., Gorenstein M., & Shapiro I. On model-dependent bounds on H 0 from gravitational images : application to Q 0957+561 A, B. Astrophys. J.l 289, L1–L4 (1985).

Famaey et al. 2005

Famaey B., Jorissen A., Luri X., Mayor M., Udry S., et al. Local kinematics of K and M giants from CORAVEL/Hipparcos/Tycho-2 data. Revisiting the concept of superclusters. Astron. & Astrophys. 430, 165–186 (2005).

Favata et al. 1997

Favata F., Micela G., & Sciortino S. The [Fe/H] distribution of a volume limited sample of solar-type stars and its implications for galactic chemical evolution. Astron. & Astrophys. 323, 809–818 (1997).

Ferrarese et al. 1994

Ferrarese L., van den Bosch F., Ford H., Jaffe W., & O'Connell R. Hubble Space Telescope Photometry of the Central Regions of Virgo Cluster Elliptical Galaxies. III. Brightness Profiles. Astron. J. 108, 1598 (1994).

Ferrarese 2002

Ferrarese L. Beyond the Bulge: A Fundamental Relation between Supermassive Black Holes and Dark Matter Halos. Astrophys. J. 578, 90–97 (2002).

Ferrarese et al. 1996

Ferrarese L., Ford H., & Jaffe W. Evidence for a Massive Black Hole in the Active Galaxy NGC 4261 from Hubble Space Telescope Images and Spectra. Astrophys. J. 470, 444 (1996).

Ferrarese & Merritt 2000

Ferrarese L. & Merritt D. A Fundamental Relation between Supermassive Black Holes and Their Host Galaxies. Astrophys. J.l 539, L9–L12 (2000).

Fillmore & Goldreich 1984

Fillmore J. & Goldreich P. Self-similar gravitational collapse in an expanding universe. Astrophys. J. 281, 1–8 (1984).

Finlator & Davé 2008

Finlator K. & Davé R. The origin of the galaxy mass-metallicity relation and implications for galactic outflows. Mon. Not. Roy. Astron. Soc. 385, 2181–2204 (2008).

Franx et al. 1991

Franx M., Illingworth G., & de Zeeuw T. The Ordered Nature of Elliptical Galaxies: Implications for Their Intrinsic Angular Momenta and Shapes. Astrophys. J. 383, 112 (1991).

Franx et al. 1989

Franx M., Illingworth G., & Heckman T. Major and Minor Axis Kinematics of 22 Ellipticals. Astrophys. J. 344, 613 (1989).

Freeman 1970

Freeman K. On the Disks of Spiral and S0 Galaxies. Astrophys. J. 160, 811 (1970).

Frenk et al. 1988

Frenk C., White S., Davis M., & Efstathiou G. The Formation of Dark Halos in a Universe Dominated by Cold Dark Matter. Astrophys. J. 327, 507 (1988).

Frieman et al. 2008

Frieman J., Bassett B., Becker A., Choi C., Cinabro D., et al. The Sloan Digital Sky Survey-II Supernova Survey: Technical Summary. Astron. J. 135, 338–347 (2008).

Fukushima 2014

Fukushima T. Prolate Spheroidal Harmonic Expansion of Gravitational Field. Astron. J. 147, 152 (2014).

Förster Schreiber et al. 2009

Förster Schreiber N., Genzel R., Bouché N., Cresci G., Davies R., et al. The SINS Survey: SINFONI Integral Field Spectroscopy of z approx 2 Star-forming Galaxies. Astrophys. J. 706, 1364–1428 (2009).

Gaia Collaboration et al. 2016a

Gaia Collaboration, Brown A., Vallenari A., Prusti T., de Bruijne J., et al. Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties. Astron. & Astrophys. 595, A2 (2016a).

Gaia Collaboration et al. 2018

Gaia Collaboration, Katz D., Antoja T., Romero-Gómez M., Drimmel R., et al. Gaia Data Release 2. Mapping the Milky Way disc kinematics. Astron. & Astrophys. 616, A11 (2018).

Gaia Collaboration et al. 2016b

Gaia Collaboration, Prusti T., de Bruijne J., Brown A., Vallenari A., et al. The Gaia mission. Astron. & Astrophys. 595, A1 (2016b).

Gavazzi et al. 2007

Gavazzi R., Treu T., Rhodes J., Koopmans L., Bolton A., et al. The Sloan Lens ACS Survey. IV. The Mass Density Profile of Early-Type Galaxies out to 100 Effective Radii. Astrophys. J. 667, 176–190 (2007).

Gebhardt et al. 2000a

Gebhardt K., Bender R., Bower G., Dressler A., Faber S., et al. A Relationship between Nuclear Black Hole Mass and Galaxy Velocity Dispersion. Astrophys. J.l 539, L13–L16 (2000a).

Gebhardt et al. 2000b

Gebhardt K., Richstone D., Kormendy J., Lauer T., Ajhar E., et al. Axisymmetric, Three-Integral Models of Galaxies: A Massive Black Hole in NGC 3379. Astron. J. 119, 1157–1171 (2000b).

Gebhardt et al. 2003

Gebhardt K., Richstone D., Tremaine S., Lauer T., Bender R., et al. Axisymmetric Dynamical Models of the Central Regions of Galaxies. Astrophys. J. 583, 92–115 (2003).

Gerhard & Binney 1985

Gerhard O. & Binney J. Triaxial galaxies containing massive black holes or central density cusps. Mon. Not. Roy. Astron. Soc. 216, 467–502 (1985).

Ghez et al. 2003

Ghez A., Duchêne G., Matthews K., Hornstein S., Tanner A., et al. The First Measurement of Spectral Lines in a Short-Period Star Bound to the Galaxy's Central Black Hole: A Paradox of Youth. Astrophys. J.l 586, L127–L131 (2003).

Ghez et al. 2008

Ghez A., Salim S., Weinberg N., Lu J., Do T., et al. Measuring Distance and Properties of the Milky Way's Central Supermassive Black Hole with Stellar Orbits. Astrophys. J. 689, 1044–1062 (2008).

Gillessen et al. 2009

Gillessen S., Eisenhauer F., Trippe S., Alexander T., Genzel R., et al. Monitoring Stellar Orbits Around the Massive Black Hole in the Galactic Center. Astrophys. J. 692, 1075–1109 (2009).

Gilman et al. 2020

Gilman D., Birrer S., Nierenberg A., Treu T., Du X., et al. Warm dark matter chills out: constraints on the halo mass function and the free-streaming length of dark matter with eight quadruple-image strong gravitational lenses. Mon. Not. Roy. Astron. Soc. 491, 6077–6101 (2020).

Gnedin et al. 2004

Gnedin O., Kravtsov A., Klypin A., & Nagai D. Response of Dark Matter Halos to Condensation of Baryons: Cosmological Simulations and Improved Adiabatic Contraction Model. Astrophys. J. 616, 16–26 (2004).

Goobar et al. 2017

Goobar A., Amanullah R., Kulkarni S., Nugent P., Johansson J., et al. iPTF16geu: A multiply imaged, gravitationally lensed type Ia supernova. Science 356, 291–295 (2017).

Goodman 1995

Goodman J. Geocentrism reexamined. Phys. Rev. D 52, 1821–1827 (1995).

Gorenstein et al. 1988

Gorenstein M., Falco E., & Shapiro I. Degeneracies in Parameter Estimates for Models of Gravitational Lens Systems. Astrophys. J. 327, 693 (1988).

Gould & Loeb 1992

Gould A. & Loeb A. Discovering Planetary Systems through Gravitational Microlenses. Astrophys. J. 396, 104 (1992).

Granato et al. 2004

Granato G., De Zotti G., Silva L., Bressan A., & Danese L. A Physical Model for the Coevolution of QSOs and Their Spheroidal Hosts. Astrophys. J. 600, 580–594 (2004).

Gravity Collaboration et al. 2018

Gravity Collaboration, Abuter R., Amorim A., Anugu N., Bauböck M., et al. Detection of the gravitational redshift in the orbit of the star S2 near the Galactic centre massive black hole. Astron. & Astrophys. 615, L15 (2018).

Gravity Collaboration et al. 2020

Gravity Collaboration, Abuter R., Amorim A., Bauböck M., Berger J., et al. Detection of the Schwarzschild precession in the orbit of the star S2 near the Galactic centre massive black hole. Astron. & Astrophys. 636, L5 (2020).

Greene & Ho 2006

Greene J. & Ho L. The M_BH-sigma Relation in Local Active Galaxies. Astrophys. J.l 641, L21–L24 (2006).

Greggio 2005

Greggio L. The rates of type Ia supernovae. I. Analytical formulations. Astron. & Astrophys. 441, 1055–1078 (2005).

Grogin & Narayan 1996

Grogin N. & Narayan R. A New Model of the Gravitational Lens 0957+561 and a Limit on the Hubble Constant. Astrophys. J. 464, 92 (1996).

Gunn & Gott 1972

Gunn J. & Gott I. On the Infall of Matter Into Clusters of Galaxies and Some Effects on Their Evolution. Astrophys. J. 176, 1 (1972).

Gustafsson et al. 2006

Gustafsson M., Fairbairn M., & Sommer-Larsen J. Baryonic pinching of galactic dark matter halos. Phys. Rev. D 74, 123522 (2006).

Gültekin et al. 2009

Gültekin K., Richstone D., Gebhardt K., Lauer T., Tremaine S., et al. The M-sigma and M-L Relations in Galactic Bulges, and Determinations of Their Intrinsic Scatter. Astrophys. J. 698, 198–221 (2009).

Harmsen et al. 2017

Harmsen B., Monachesi A., Bell E., de Jong R., Bailin J., et al. Diverse stellar haloes in nearby Milky Way mass disc galaxies. Mon. Not. Roy. Astron. Soc. 466, 1491 (2017).

Harms et al. 1994

Harms R., Ford H., Tsvetanov Z., Hartig G., Dressel L., et al. HST FOS Spectroscopy of M87: Evidence for a Disk of Ionized Gas around a Massive Black Hole. Astrophys. J.l 435, L35 (1994).

Harris 1996

Harris W. A Catalog of Parameters for Globular Clusters in the Milky Way. Astron. J. 112, 1487 (1996).

Harris et al. 2013

Harris W., Harris G., & Alessi M. A Catalog of Globular Cluster Systems: What Determines the Size of a Galaxy's Globular Cluster Population? Astrophys. J. 772, 82 (2013).

Hayden et al. 2015

Hayden M., Bovy J., Holtzman J., Nidever D., Bird J., et al. Chemical Cartography with APOGEE: Metallicity Distribution Functions and the Chemical Structure of the Milky Way Disk. Astrophys. J. 808, 132 (2015).

Heckman et al. 1990

Heckman T., Armus L., & Miley G. On the Nature and Implications of Starburst-driven Galactic Superwinds. Astrophys. J. Supp. 74, 833 (1990).

Hege et al. 1981

Hege E., Hubbard E., Strittmatter P., & Worden S. Speckle interferometry observations of the triple QSO PG 1115+08. Astrophys. J.l 248, L1–L3 (1981).

Heiligman & Schwarzschild 1979

Heiligman G. & Schwarzschild M. On the nonexistence of three-dimensional tube orbits around the intermediate axis in a triaxial galaxy model. Astrophys. J. 233, 872–876 (1979).

Henon 1959

Henon M. L'amas isochrone: I. Annales d'Astrophysique 22, 126 (1959).

Henon & Heiles 1964

Henon M. & Heiles C. The applicability of the third integral of motion: Some numerical experiments. Astron. J. 69, 73 (1964).

Hernquist 1990

Hernquist L. An Analytical Model for Spherical Galaxies and Bulges. Astrophys. J. 356, 359 (1990).

Hernquist & Ostriker 1992

Hernquist L. & Ostriker J. A Self-consistent Field Method for Galactic Dynamics. Astrophys. J. 386, 375 (1992).

Hertzsprung 1909

Hertzsprung E. On new members of the system of the stars beta, gamma, delta, epsilon, zeta Ursae Majoris. Astrophys. J. 30, 135–143 (1909).

Hewitt et al. 1987

Hewitt J., Turner E., Lawrence C., Schneider D., Gunn J., et al. The Triple Radio Source 0023+171: A Candidate for a Dark Gravitational Lens. Astrophys. J. 321, 706 (1987).

Hewitt et al. 1988

Hewitt J., Turner E., Schneider D., Burke B., & Langston G. Unusual radio source MG1131+0456: a possible Einstein ring. Nature 333, 537–540 (1988).

HI4PI Collaboration et al. 2016

HI4PI Collaboration, Ben Bekhti N., Flöer L., Keller R., Kerp J., et al. HI4PI: A full-sky H I survey based on EBHIS and GASS. Astron. & Astrophys. 594, A116 (2016).

Hildebrandt et al. 2009

Hildebrandt H., Pielorz J., Erben T., van Waerbeke L., Simon P., et al. CARS: the CFHTLS-Archive-Research Survey. II. Weighing dark matter halos of Lyman-break galaxies at z = 3-5. Astron. & Astrophys. 498, 725–736 (2009).

HIPPARCOS Collaboration 1997

The HIPPARCOS and TYCHO catalogues. Astrometric and photometric star catalogues derived from the ESA HIPPARCOS Space Astrometry Mission, volume 1200 of ESA Special Publication, January 1997.

Hirata et al. 1987

Hirata K., Kajita T., Koshiba M., Nakahata M., Oyama Y., et al. Observation of a neutrino burst from the supernova SN1987A. Phys. Rev. Lett. 58, 1490–1493 (1987).

Hoekstra et al. 2004

Hoekstra H., Yee H., & Gladders M. Properties of Galaxy Dark Matter Halos from Weak Lensing. Astrophys. J. 606, 67–77 (2004).

Hofmann-Wellenhof & Moritz 2005

Hofmann-Wellenhof B. & Moritz H. Physical Geodesy. Springer, Berlin, Germany (2005).

Holley-Bockelmann et al. 2002

Holley-Bockelmann K., Mihos J., Sigurdsson S., Hernquist L., & Norman C. The Evolution of Cuspy Triaxial Galaxies Harboring Central Black Holes. Astrophys. J. 567, 817–827 (2002).

Holmberg & Flynn 2000

Holmberg J. & Flynn C. The local density of matter mapped by Hipparcos. Mon. Not. Roy. Astron. Soc. 313, 209–216 (2000).

Huang et al. 2021

Huang X., Storfer C., Gu A., Ravi V., Pilon A., et al. Discovering New Strong Gravitational Lenses in the DESI Legacy Imaging Surveys. Astrophys. J. 909, 27 (2021).

Hubble 1926

Hubble E. Extragalactic nebulae. Astrophys. J. 64, 321–369 (1926).

Huchra et al. 1985

Huchra J., Gorenstein M., Kent S., Shapiro I., Smith G., et al. 2237+0305 : a new and unusual gravitational lens. Astron. J. 90, 691–696 (1985).

Hunter 2005

Hunter C. Chaos in Orbits Due to Disk Crossings. Annals of the New York Academy of Sciences 1045, 120 (2005).

Hunt et al. 2019

Hunt J., Bub M., Bovy J., Mackereth J., Trick W., et al. Signatures of resonance and phase mixing in the Galactic disc. Mon. Not. Roy. Astron. Soc. 490, 1026–1043 (2019).

Häring & Rix 2004

Häring N. & Rix H. On the Black Hole Mass-Bulge Mass Relation. Astrophys. J.l 604, L89–L92 (2004).

Iben & Tutukov 1984

Iben J. & Tutukov A. Supernovae of type I as end products of the evolution of binaries with components of moderate initial mass. Astrophys. J. Supp. 54, 335–372 (1984).

Illingworth 1977

Illingworth G. Rotation (?) in 13 elliptical galaxies. Astrophys. J.l 218, L43–L47 (1977).

Iwamoto et al. 1999

Iwamoto K., Brachwitz F., Nomoto K., Kishimoto N., Umeda H., et al. Nucleosynthesis in Chandrasekhar Mass Models for Type IA Supernovae and Constraints on Progenitor Systems and Burning-Front Propagation. Astrophys. J. Supp. 125, 439–462 (1999).

Jaffe 1983

Jaffe W. A simple model for the distribution of light in spherical galaxies. Mon. Not. Roy. Astron. Soc. 202, 995–999 (1983).

Janka 2012

Janka H. Explosion Mechanisms of Core-Collapse Supernovae. Annual Review of Nuclear and Particle Science 62, 407–451 (2012).

Jedrzejewski & Schechter 1988

Jedrzejewski R. & Schechter P. Evidence for Dynamical Subsystems in Elliptical Galaxies. Astrophys. J.l 330, L87 (1988).

Jing & Suto 2002

Jing Y. & Suto Y. Triaxial Modeling of Halo Density Profiles with High-Resolution N-Body Simulations. Astrophys. J. 574, 538–553 (2002).

Jurić et al. 2008

Jurić M., Ivezić Z., Brooks A., Lupton R., Schlegel D., et al. The Milky Way Tomography with SDSS. I. Stellar Number Density Distribution. Astrophys. J. 673, 864–914 (2008).

Kahn & Woltjer 1959

Kahn F. & Woltjer L. Intergalactic Matter and the Galaxy. Astrophys. J. 130, 705 (1959).

Kaiser 1995

Kaiser N. Nonlinear Cluster Lens Reconstruction. Astrophys. J.l 439, L1 (1995).

Kaiser & Squires 1993

Kaiser N. & Squires G. Mapping the Dark Matter with Weak Gravitational Lensing. Astrophys. J. 404, 441 (1993).

Kalberla & Kerp 2009

Kalberla P. & Kerp J. The HI Distribution of the Milky Way. Ann. Rev. Astron. Astrophys. 47, 27–61 (2009).

Kalnajs 1983

Kalnajs A. Mass distribution and dark halos: Discussion. In Athanassoula E., editor, Internal Kinematics and Dynamics of Galaxies, volume 100, 87–88. January 1983.

Kalnajs 1976

Kalnajs A. Dynamics of Flat Galaxies. II. Biorthonormal Surface Density-Potential Pairs for Finite Disks. Astrophys. J. 205, 745–750 (1976).

Karakas 2010

Karakas A. Updated stellar yields from asymptotic giant branch models. Mon. Not. Roy. Astron. Soc. 403, 1413–1425 (2010).

Kasen et al. 2017

Kasen D., Metzger B., Barnes J., Quataert E., & Ramirez-Ruiz E. Origin of the heavy elements in binary neutron-star mergers from a gravitational-wave event. Nature 551, 80–84 (2017).

Katz et al. 1996

Katz N., Weinberg D., & Hernquist L. Cosmological Simulations with TreeSPH. Astrophys. J. Supp. 105, 19 (1996).

Kausel & Irfan Baig 2012

Kausel E. & Irfan Baig M. Laplace transform of products of Bessel functions: A visitation of earlier formulas. Qtly. Appl. Math. 70, 77 (2012).

Kayser et al. 1986

Kayser R., Refsdal S., & Stabell R. Astrophysical applications of gravitational micro-lensing. Astron. & Astrophys. 166, 36–52 (1986).

Kazantzidis et al. 2010

Kazantzidis S., Abadi M., & Navarro J. The Sphericalization of Dark Matter Halos by Galaxy Disks. Astrophys. J.l 720, L62–L66 (2010).

Keeton & Kochanek 1998

Keeton C. & Kochanek C. Gravitational Lensing by Spiral Galaxies. Astrophys. J. 495, 157–169 (1998).

Keeton et al. 1997

Keeton C., Kochanek C., & Seljak U. Shear and Ellipticity in Gravitational Lenses. Astrophys. J. 482, 604–620 (1997).

Kelly et al. 2014

Kelly P., Fox O., Filippenko A., Cenko S., Prato L., et al. Constraints on the Progenitor System of the Type Ia Supernova 2014J from Pre-explosion Hubble Space Telescope Imaging. Astrophys. J. 790, 3 (2014).

Kent 1986

Kent S. Dark matter in spiral galaxies. I. Galaxies with optical rotation curves. Astron. J. 91, 1301–1327 (1986).

Keres et al. 2005

Keres D., Katz N., Weinberg D., & Davé R. How do galaxies get their gas? Mon. Not. Roy. Astron. Soc. 363, 2–28 (2005).

Kerr & Lynden-Bell 1986

Kerr F. & Lynden-Bell D. Review of galactic constants. Mon. Not. Roy. Astron. Soc. 221, 1023–1038 (1986).

Kharchenko et al. 2013

Kharchenko N., Piskunov A., Schilbach E., Röser S., & Scholz R. Global survey of star clusters in the Milky Way. II. The catalogue of basic parameters. Astron. & Astrophys. 558, A53 (2013).

King 1978

King I. Surface photometry of elliptical galaxies. Astrophys. J. 222, 1–13 (1978).

King 1966

King I. The structure of star clusters. III. Some simple dynamical models. Astron. J. 71, 64 (1966).

King & Browne 1996

King L. & Browne I. Biases, selection effects and image multiplicities in the Jodrell Bank-VLA gravitational lens survey. Mon. Not. Roy. Astron. Soc. 282, 67–76 (1996).

Knapp et al. 1978

Knapp G., Tremaine S., & Gunn J. The global properties of the Galaxy. I. The H I distribution outside the solar circle. Astron. J. 83, 1585–1593 (1978).

Kochanek 1990

Kochanek C. Inverting cluster gravitational lenses. Mon. Not. Roy. Astron. Soc. 247, 135 (1990).

Kochanek 2004

Kochanek C. Quantitative Interpretation of Quasar Microlensing Light Curves. Astrophys. J. 605, 58–77 (2004).

Kochanek 1996

Kochanek C. The Mass of the Milky Way. Astrophys. J. 457, 228 (1996).

Koda et al. 2015

Koda J., Yagi M., Yamanoi H., & Komiyama Y. Approximately a Thousand Ultra-diffuse Galaxies in the Coma Cluster. Astrophys. J.l 807, L2 (2015).

Koopmans et al. 2009

Koopmans L., Bolton A., Treu T., Czoske O., Auger M., et al. The Structure and Dynamics of Massive Early-Type Galaxies: On Homology, Isothermality, and Isotropy Inside One Effective Radius. Astrophys. J.l 703, L51–L54 (2009).

Kormann et al. 1994

Kormann R., Schneider P., & Bartelmann M. Isothermal elliptical gravitational lens models. Astron. & Astrophys. 284, 285–299 (1994).

Kormendy 1982

Kormendy J. Observations of Galaxy Structure and Dynamics. Saas-Fee Advanced Course 12, 115 (1982).

Kormendy 1985

Kormendy J. Brightness profiles of the cores of bulges and elliptical galaxies. Astrophys. J.l 292, L9–L13 (1985).

Kormendy & Ho 2013

Kormendy J. & Ho L. Coevolution (Or Not) of Supermassive Black Holes and Host Galaxies. Ann. Rev. Astron. Astrophys. 51, 511–653 (2013).

Kormendy & Richstone 1995

Kormendy J. & Richstone D. Inward Bound—The Search For Supermassive Black Holes In Galactic Nuclei. Ann. Rev. Astron. Astrophys. 33, 581 (1995).

Kovner 1987

Kovner I. The Quadrupole Gravitational Lens. Astrophys. J. 312, 22 (1987).

Kovner 1990

Kovner I. Fermat Principle in Arbitrary Gravitational Fields. Astrophys. J. 351, 114 (1990).

Krajnović et al. 2005

Krajnović D., Cappellari M., Emsellem E., McDermid R., & de Zeeuw P. Dynamical modelling of stars and gas in NGC 2974: determination of mass-to-light ratio, inclination and orbital structure using the Schwarzschild method. Mon. Not. Roy. Astron. Soc. 357, 1113–1133 (2005).

Krajnović et al. 2011

Krajnović D., Emsellem E., Cappellari M., Alatalo K., Blitz L., et al. The ATLAS$^3D$ project - II. Morphologies, kinemetric features and alignment between photometric and kinematic axes of early-type galaxies. Mon. Not. Roy. Astron. Soc. 414, 2923–2949 (2011).

Kristian & Sachs 1966

Kristian J. & Sachs R. Observations in Cosmology. Astrophys. J. 143, 379 (1966).

Kroupa 2001

Kroupa P. On the variation of the initial mass function. Mon. Not. Roy. Astron. Soc. 322, 231–246 (2001).

Kuijken & Dubinski 1995

Kuijken K. & Dubinski J. Nearly Self-Consistent Disc / Bulge / Halo Models for Galaxies. Mon. Not. Roy. Astron. Soc. 277, 1341 (1995).

Kuijken & Gilmore 1989a

Kuijken K. & Gilmore G. The mass distribution in the galactic disc -II. Determination of the surface mass density of the galactic disc near the Sun. Mon. Not. Roy. Astron. Soc. 239, 605–649 (1989a).

Kuijken & Gilmore 1989b

Kuijken K. & Gilmore G. The mass distribution in the galactic disc -III. The local volume mass density. Mon. Not. Roy. Astron. Soc. 239, 651–664 (1989b).

Kuijken & Tremaine 1991

Kuijken K. & Tremaine S. Large-scale Oscillations of the Galaxy and the Kinematics of the Solar Neighbourhood. In Sundelius B., editor, Dynamics of Disc Galaxies, 71. January 1991.

Kuijken & Gilmore 1989c

Kuijken K. & Gilmore G. The mass distribution in the galactic disc. I - A technique to determine the integral surface mass density of the disc near the sun. Mon. Not. Roy. Astron. Soc. 239, 571–603 (1989c).

Kuijken & Gilmore 1991

Kuijken K. & Gilmore G. The Galactic Disk Surface Mass Density and the Galactic Force K Z at Z = 1.1 Kiloparsecs. Astrophys. J.l 367, L9 (1991).

Kushnir et al. 2013

Kushnir D., Katz B., Dong S., Livne E., & Fernández R. Head-on Collisions of White Dwarfs in Triple Systems Could Explain Type Ia Supernovae. Astrophys. J.l 778, L37 (2013).

Kuzmin 1956

Kuzmin G. A stationary galaxy model admitting triaxial velocity distribution (in Russian). Astron. Zh. 33, 27 (1956).

Larson 1972

Larson R. Effect of Infalling Matter on the Heavy Element Content of a Galaxy. Nature Phys. Sci. 236, 7–8 (1972).

Lauer et al. 1995

Lauer T., Ajhar E., Byun Y., Dressler A., Faber S., et al. The Centers of Early-Type Galaxies with HST.I.An Observational Survey. Astron. J. 110, 2622 (1995).

Laurent et al. 2016

Laurent P., Le Goff J., Burtin E., Hamilton J., Hogg D., et al. A 14 h^-3 Gpc^3 study of cosmic homogeneity using BOSS DR12 quasar sample. J. Cosmo & Astropart. Phys. 2016, 060 (2016).

Lawrence et al. 1984

Lawrence C., Schneider D., Schmidt M., Bennett C., Hewitt J., et al. Discovery of a New Gravitational Lens System. Science 223, 46–49 (1984).

Le Verrier 1859

Le Verrier U. Theorie du mouvement de Mercure. Annales de l'Observatoire de Paris 5, 1 (1859).

Lebach et al. 1995

Lebach D., Corey B., Shapiro I., Ratner M., Webber J., et al. Measurement of the Solar Gravitational Deflection of Radio Waves Using Very-Long-Baseline Interferometry. Phys. Rev. Lett. 75, 1439–1442 (1995).

Lelli et al. 2016

Lelli F., McGaugh S., & Schombert J. SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves. Astron. J. 152, 157 (2016).

Leonard & Tremaine 1990

Leonard P. & Tremaine S. The Local Galactic Escape Speed. Astrophys. J. 353, 486 (1990).

Leroy et al. 2008

Leroy A., Walter F., Brinks E., Bigiel F., de Blok W., et al. The Star Formation Efficiency in Nearby Galaxies: Measuring Where Gas Forms Stars Effectively. Astron. J. 136, 2782–2845 (2008).

Li & White 2008

Li Y. & White S. Masses for the Local Group and the Milky Way. Mon. Not. Roy. Astron. Soc. 384, 1459–1468 (2008).

Lokas & Mamon 2001

Lokas E. & Mamon G. Properties of spherical galaxies and clusters with an NFW density profile. Mon. Not. Roy. Astron. Soc. 321, 155–166 (2001).

Lo 2005

Lo K. Mega-Masers and Galaxies. Ann. Rev. Astron. Astrophys. 43, 625–676 (2005).

Lundqvist et al. 2015

Lundqvist P., Nyholm A., Taddia F., Sollerman J., Johansson J., et al. No trace of a single-degenerate companion in late spectra of supernovae 2011fe and 2014J. Astron. & Astrophys. 577, A39 (2015).

Lynden-Bell 1962

Lynden-Bell D. Stellar dynamics: Exact solution of the self-gravitation equation. Mon. Not. Roy. Astron. Soc. 123, 447 (1962).

Lynden-Bell 1967

Lynden-Bell D. Statistical mechanics of violent relaxation in stellar systems. Mon. Not. Roy. Astron. Soc. 136, 101 (1967).

Lynden-Bell 1969

Lynden-Bell D. Galactic Nuclei as Collapsed Old Quasars. Nature 223, 690–694 (1969).

Lynds & Petrosian 1989

Lynds R. & Petrosian V. Luminous Arcs in Clusters of Galaxies. Astrophys. J. 336, 1 (1989).

Mackereth et al. 2019

Mackereth J., Bovy J., Leung H., Schiavon R., Trick W., et al. Dynamical heating across the Milky Way disc using APOGEE and Gaia. Mon. Not. Roy. Astron. Soc. 489, 176–195 (2019).

Mackereth et al. 2017

Mackereth J., Bovy J., Schiavon R., Zasowski G., Cunha K., et al. The age-metallicity structure of the Milky Way disc using APOGEE. Mon. Not. Roy. Astron. Soc. 471, 3057–3078 (2017).

Magorrian et al. 1998

Magorrian J., Tremaine S., Richstone D., Bender R., Bower G., et al. The Demography of Massive Dark Objects in Galaxy Centers. Astron. J. 115, 2285–2305 (1998).

Malvido & Sellwood 2015

Malvido J. & Sellwood J. Made-to-measure models of self-similar triaxial haloes with steep inner density gradients. Mon. Not. Roy. Astron. Soc. 449, 2553–2565 (2015).

Mandelbaum 2018

Mandelbaum R. Weak Lensing for Precision Cosmology. Ann. Rev. Astron. Astrophys. 56, 393–433 (2018).

Maoz & Mannucci 2012

Maoz D. & Mannucci F. Type-Ia Supernova Rates and the Progenitor Problem: A Review. Pub. Astron. Soc. Aus. 29, 447–465 (2012).

Maoz et al. 2012

Maoz D., Mannucci F., & Brandt T. The delay-time distribution of Type Ia supernovae from Sloan II. Mon. Not. Roy. Astron. Soc. 426, 3282–3294 (2012).

Maoz et al. 2014

Maoz D., Mannucci F., & Nelemans G. Observational Clues to the Progenitors of Type Ia Supernovae. Ann. Rev. Astron. Astrophys. 52, 107–170 (2014).

Mao & Schneider 1998

Mao S. & Schneider P. Evidence for substructure in lens galaxies? Mon. Not. Roy. Astron. Soc. 295, 587–594 (1998).

Marconi & Hunt 2003

Marconi A. & Hunt L. The Relation between Black Hole Mass, Bulge Mass, and Near-Infrared Luminosity. Astrophys. J.l 589, L21–L24 (2003).

Margutti et al. 2014

Margutti R., Parrent J., Kamble A., Soderberg A., Foley R., et al. No X-Rays from the Very Nearby Type Ia SN 2014J: Constraints on Its Environment. Astrophys. J. 790, 52 (2014).

Maus 2010

Maus S. An ellipsoidal harmonic representation of Earth's lithospheric magnetic field to degree and order 720. Geochemistry, Geophysics, Geosystems 11, Q06015 (2010).

Mayor et al. 2003

Mayor M., Pepe F., Queloz D., Bouchy F., Rupprecht G., et al. Setting New Standards with HARPS. The Messenger 114, 20–24 (2003).

McConnell & Ma 2013

McConnell N. & Ma C. Revisiting the Scaling Relations of Black Hole Masses and Host Galaxy Properties. Astrophys. J. 764, 184 (2013).

McKee et al. 2015

McKee C., Parravano A., & Hollenbach D. Stars, Gas, and Dark Matter in the Solar Neighborhood. Astrophys. J. 814, 13 (2015).

McKenzie 1985

McKenzie R. A gravitational lens produces an odd number of images. Journal of Mathematical Physics 26, 1592–1597 (1985).

McMillan 2017

McMillan P. The mass distribution and gravitational potential of the Milky Way. Mon. Not. Roy. Astron. Soc. 465, 76–94 (2017).

Merritt et al. 2016

Merritt A., van Dokkum P., Abraham R., & Zhang J. The Dragonfly nearby Galaxies Survey. I. Substantial Variation in the Diffuse Stellar Halos around Spiral Galaxies. Astrophys. J. 830, 62 (2016).

Merritt 1985

Merritt D. Spherical stellar systems with spheroidal velocity distributions. Astron. J. 90, 1027–1037 (1985).

Merritt & Ferrarese 2001

Merritt D. & Ferrarese L. Black hole demographics from the M$_•$-\ensuremath \sigma relation. Mon. Not. Roy. Astron. Soc. 320, L30–L34 (2001).

Merritt & Fridman 1996

Merritt D. & Fridman T. Triaxial Galaxies with Cusps. Astrophys. J. 460, 136 (1996).

Merritt & Quinlan 1998

Merritt D. & Quinlan G. Dynamical Evolution of Elliptical Galaxies with Central Singularities. Astrophys. J. 498, 625–639 (1998).

Merritt & Valluri 1996

Merritt D. & Valluri M. Chaos and Mixing in Triaxial Stellar Systems. Astrophys. J. 471, 82 (1996).

Mestel 1963

Mestel L. On the galactic law of rotation. Mon. Not. Roy. Astron. Soc. 126, 553 (1963).

Metcalf & Zhao 2002

Metcalf R. & Zhao H. Flux Ratios as a Probe of Dark Substructures in Quadruple-Image Gravitational Lenses. Astrophys. J.l 567, L5–L8 (2002).

Michie 1963

Michie R. On the distribution of high energy stars in spherical stellar systems. Mon. Not. Roy. Astron. Soc. 125, 127 (1963).

Michie & Bodenheimer 1963

Michie R. & Bodenheimer P. The dynamics of spherical stellar systems, II. Mon. Not. Roy. Astron. Soc. 126, 269 (1963).

Miralda-Escude 1991

Miralda-Escude J. Gravitational Lensing by Clusters of Galaxies: Constraining the Mass Distribution. Astrophys. J. 370, 1 (1991).

Miralda-Escude & Schwarzschild 1989

Miralda-Escude J. & Schwarzschild M. On the Orbit Structure of the Logarithmic Potential. Astrophys. J. 339, 752 (1989).

Misner et al. 1973

Misner C., Thorne K., & Wheeler J. Gravitation. W.H. Freeman and Co., San Francisco, CA (1973).

Miville-Deschênes et al. 2017

Miville-Deschênes M., Murray N., & Lee E. Physical Properties of Molecular Clouds for the Entire Milky Way Disk. Astrophys. J. 834, 57 (2017).

Miyamoto & Nagai 1975

Miyamoto M. & Nagai R. Three-dimensional models for the distribution of mass in galaxies. Pub. Astron. Soc. Japan 27, 533–543 (1975).

Miyoshi et al. 1995

Miyoshi M., Moran J., Herrnstein J., Greenhill L., Nakai N., et al. Evidence for a black hole from high rotation velocities in a sub-parsec region of NGC4258. Nature 373, 127–129 (1995).

Moni Bidin et al. 2012

Moni Bidin C., Carraro G., & Méndez R. Kinematical and Chemical Vertical Structure of the Galactic Thick Disk. I. Thick Disk Kinematics. Astrophys. J. 747, 101 (2012).

Mould 1982

Mould J. Stellar populations in the Galaxy. Ann. Rev. Astron. Astrophys. 20, 91–115 (1982).

Mroz et al. 2019

Mroz P., Udalski A., Skowron J., Szymanski M., Soszynski I., et al. Microlensing Optical Depth and Event Rate toward the Galactic Bulge from 8 yr of OGLE-IV Observations. Astrophys. J. Supp. 244, 29 (2019).

Ménard et al. 2010

Ménard B., Scranton R., Fukugita M., & Richards G. Measuring the galaxy-mass and galaxy-dust correlations through magnification and reddening. Mon. Not. Roy. Astron. Soc. 405, 1025–1039 (2010).

Nakano & Makino 1999

Nakano T. & Makino J. On the Origin of Density Cusps in Elliptical Galaxies. Astrophys. J. 510, 155–166 (1999).

Navarro et al. 1996

Navarro J., Frenk C., & White S. The Structure of Cold Dark Matter Halos. Astrophys. J. 462, 563 (1996).

Navarro et al. 1997

Navarro J., Frenk C., & White S. A Universal Density Profile from Hierarchical Clustering. Astrophys. J. 490, 493–508 (1997).

Newcomb 1882

Newcomb S. Discussion and results of observations on transits of Mercury from 1677 to 1881. United States. Nautical Almanac Office. Astronomical paper ; v.1 1, 363–487 (1882).

Nieva & Przybilla 2012

Nieva M. & Przybilla N. Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models. Astron. & Astrophys. 539, A143 (2012).

Nityananda & Samuel 1992

Nityananda R. & Samuel J. Fermat's principle in general relativity. Phys. Rev. D 45, 3862–3864 (1992).

Nomoto 1982

Nomoto K. Accreting white dwarf models for type I supernovae. I - Presupernova evolution and triggering mechanisms. Astrophys. J. 253, 798–810 (1982).

Nordin et al. 2014

Nordin J., Rubin D., Richard J., Rykoff E., Aldering G., et al. Lensed Type Ia supernovae as probes of cluster mass models. Mon. Not. Roy. Astron. Soc. 440, 2742–2754 (2014).

Ogata 2005

Ogata H. A numerical integration formula based on the Bessel functions. Pub. Res. Inst. Math. Sci. 41, 949–970 (2005).

Ogorodnikov & Latyshev 1968

Ogorodnikov K. & Latyshev I. Studies of Local Star Streams. I. The Hyades Stream. Sov. Astron. 12, 279 (1968).

Ohanian 1983

Ohanian H. The caustics of gravitational 'lenses'. Astrophys. J. 271, 551–555 (1983).

Ollongren 1962

Ollongren A. Three-dimensional galactic stellar orbits. Bull. Astron. Inst. Netherlands 16, 241 (1962).

Oort 1927

Oort J. Observational evidence confirming Lindblad's hypothesis of a rotation of the galactic system. Bull. Astron. Inst. Netherlands 3, 275 (1927).

Oort 1932

Oort J. The force exerted by the stellar system in the direction perpendicular to the galactic plane and some related problems. Bull. Astron. Inst. Netherlands 6, 249 (1932).

Oort 1960

Oort J. Note on the determination of Kz and on the mass density near the Sun. Bull. Astron. Inst. Netherlands 15, 45 (1960).

Oort 1970

Oort J. The formation of galaxies and the origin of the high-velocity hydrogen. Astron. & Astrophys. 7, 381 (1970).

Oppenheimer & Davé 2006

Oppenheimer B. & Davé R. Cosmological simulations of intergalactic medium enrichment from galactic outflows. Mon. Not. Roy. Astron. Soc. 373, 1265–1292 (2006).

Osipkov 1979

Osipkov L. Spherical systems of gravitating bodies with an ellipsoidal velocity distribution. Soviet Astronomy Letters 5, 42–44 (1979).

Paczynski 1986a

Paczynski B. Gravitational Microlensing at Large Optical Depth. Astrophys. J. 301, 503 (1986a).

Paczynski 1986b

Paczynski B. Gravitational Microlensing by the Galactic Halo. Astrophys. J. 304, 1 (1986b).

Pagel & Patchett 1975

Pagel B. & Patchett B. Metal abundances in nearby stars and the chemical history of the solar neighbourhood. Mon. Not. Roy. Astron. Soc. 172, 13–40 (1975).

Peebles 1972

Peebles P. Star Distribution Near a Collapsed Object. Astrophys. J. 178, 371–376 (1972).

Peeples et al. 2014

Peeples M., Werk J., Tumlinson J., Oppenheimer B., Prochaska J., et al. A Budget and Accounting of Metals at z approx 0: Results from the COS-Halos Survey. Astrophys. J. 786, 54 (2014).

Perlmutter et al. 1999

Perlmutter S., Aldering G., Goldhaber G., Knop R., Nugent P., et al. Measurements of Omega and Lambda from 42 High-Redshift Supernovae. Astrophys. J. 517, 565–586 (1999).

Peñarrubia et al. 2012

Peñarrubia J., Pontzen A., Walker M., & Koposov S. The Coupling between the Core/Cusp and Missing Satellite Problems. Astrophys. J.l 759, L42 (2012).

Piffl et al. 2014

Piffl T., Scannapieco C., Binney J., Steinmetz M., Scholz R., et al. The RAVE survey: the Galactic escape speed and the mass of the Milky Way. Astron. & Astrophys. 562, A91 (2014).

Planck Collaboration et al. 2014

Planck Collaboration, Ade P., Aghanim N., Armitage-Caplan C., Arnaud M., et al. Planck 2013 results. XVI. Cosmological parameters. Astron. & Astrophys. 571, A16 (2014).

Planck Collaboration et al. 2016

Planck Collaboration, Ade P., Aghanim N., Arnaud M., Ashdown M., et al. Planck 2015 results. XIII. Cosmological parameters. Astron. & Astrophys. 594, A13 (2016).

Planck Collaboration et al. 2020

Planck Collaboration, Aghanim N., Akrami Y., Ashdown M., Aumont J., et al. Planck 2018 results. VI. Cosmological parameters. Astron. & Astrophys. 641, A6 (2020).

Plummer 1911

Plummer H. On the problem of distribution in globular star clusters. Mon. Not. Roy. Astron. Soc. 71, 460–470 (1911).

Pohlen & Trujillo 2006

Pohlen M. & Trujillo I. The structure of galactic disks. Studying late-type spiral galaxies using SDSS. Astron. & Astrophys. 454, 759–772 (2006).

Pontzen & Governato 2012

Pontzen A. & Governato F. How supernova feedback turns dark matter cusps into cores. Mon. Not. Roy. Astron. Soc. 421, 3464–3471 (2012).

Poon & Merritt 2001

Poon M. & Merritt D. Orbital Structure of Triaxial Black Hole Nuclei. Astrophys. J. 549, 192–204 (2001).

Press et al. 2007

Press W., Teukolsky S., Vetterling W., & Flannery B. Numerical Recipes 3rd Edition: The Art of Scientific Computing. Cambridge University Press, USA (2007). ISBN 0521880688.

Pritchet et al. 2008

Pritchet C., Howell D., & Sullivan M. The Progenitors of Type Ia Supernovae. Astrophys. J.l 683, L25 (2008).

Quinlan et al. 1995

Quinlan G., Hernquist L., & Sigurdsson S. Models of Galaxies with Central Black Holes: Adiabatic Growth in Spherical Galaxies. Astrophys. J. 440, 554 (1995).

Ramirez et al. 2013

Ramirez I., Allende Prieto C., & Lambert D. Oxygen Abundances in Nearby FGK Stars and the Galactic Chemical Evolution of the Local Disk and Halo. Astrophys. J. 764, 78 (2013).

Reasenberg et al. 1979

Reasenberg R., Shapiro I., MacNeil P., Goldstein R., Breidenthal J., et al. Viking relativity experiment - Verification of signal retardation by solar gravity. Astrophys. J.l 234, L219–L221 (1979).

Rees 1984

Rees M. Black Hole Models for Active Galactic Nuclei. Ann. Rev. Astron. Astrophys. 22, 471–506 (1984).

Refsdal 1964

Refsdal S. On the possibility of determining Hubble's parameter and the masses of galaxies from the gravitational lens effect. Mon. Not. Roy. Astron. Soc. 128, 307 (1964).

Reid et al. 2002

Reid I., Gizis J., & Hawley S. The Palomar/MSU Nearby Star Spectroscopic Survey. IV. The Luminosity Function in the Solar Neighborhood and M Dwarf Kinematics. Astron. J. 124, 2721–2738 (2002).

Rein & Tamayo 2015

Rein H. & Tamayo D. WHFAST: a fast and unbiased implementation of a symplectic Wisdom-Holman integrator for long-term gravitational simulations. Mon. Not. Roy. Astron. Soc. 452, 376–388 (2015).

Reyes et al. 2010

Reyes R., Mandelbaum R., Seljak U., Baldauf T., Gunn J., et al. Confirmation of general relativity on large scales from weak lensing and galaxy velocities. Nature 464, 256–258 (2010).

Reynolds & Nowak 2003

Reynolds C. & Nowak M. Fluorescent iron lines as a probe of astrophysical black hole systems. Phys. Rep. 377, 389–466 (2003).

Riess et al. 1998

Riess A., Filippenko A., Challis P., Clocchiatti A., Diercks A., et al. Observational Evidence from Supernovae for an Accelerating Universe and a Cosmological Constant. Astron. J. 116, 1009–1038 (1998).

Rix et al. 1997

Rix H., de Zeeuw P., Cretton N., van der Marel R., & Carollo C. Dynamical Modeling of Velocity Profiles: The Dark Halo around the Elliptical Galaxy NGC 2434. Astrophys. J. 488, 702–719 (1997).

Rix et al. 1992

Rix H., Franx M., Fisher D., & Illingworth G. NGC 4550: A Laboratory for Testing Galaxy Formation. Astrophys. J.l 400, L5 (1992).

Rix & White 1990

Rix H. & White S. Disks in Elliptical Galaxies. Astrophys. J. 362, 52 (1990).

Roberts 1962

Roberts P. On the Superpotential and Supermatrix of a Heterogeneous Ellipsoid. Astrophys. J. 136, 1108 (1962).

Robijn & Earn 1996

Robijn F. & Earn D. Potential-density basis sets in axisymmetric coordinates. Mon. Not. Roy. Astron. Soc. 282, 1129–1142 (1996).

Roman 1949

Roman N. The Ursa Major Group. Astrophys. J. 110, 205 (1949).

Rubin et al. 1980

Rubin V., Ford J., & Thonnard N. Rotational properties of 21 SC galaxies with a large range of luminosities and radii, from NGC 4605 (R=4kpc) to UGC 2885 (R=122kpc). Astrophys. J. 238, 471–487 (1980).

Rubin et al. 1992

Rubin V., Graham J., & Kenney J. Cospatial Counterrotating Stellar Disks in the Virgo E7/S0 Galaxy NGC 4550. Astrophys. J.l 394, L9 (1992).

Rusin & Tegmark 2001

Rusin D. & Tegmark M. Why Is the Fraction of Four-Image Radio Lens Systems So High? Astrophys. J. 553, 709–721 (2001).

Ryden 1996

Ryden B. The Intrinsic Shapes of Stellar Systems. Astrophys. J. 461, 146 (1996).

Saha 1991

Saha P. Unstable modes of a spherical stellar system. Mon. Not. Roy. Astron. Soc. 248, 494–502 (1991).

Saha 2000

Saha P. Lensing Degeneracies Revisited. Astron. J. 120, 1654–1659 (2000).

Saha & Tremaine 1992

Saha P. & Tremaine S. Symplectic Integrators for Solar System Dynamics. Astron. J. 104, 1633 (1992).

Salpeter 1964

Salpeter E. Accretion of Interstellar Matter by Massive Objects. Astrophys. J. 140, 796–800 (1964).

Salpeter 1955

Salpeter E. The Luminosity Function and Stellar Evolution. Astrophys. J. 121, 161 (1955).

Salpeter 1959

Salpeter E. The Rate of Star Formation in the Galaxy. Astrophys. J. 129, 608 (1959).

Sargent et al. 1978

Sargent W., Young P., Boksenberg A., Shortridge K., Lynds C., et al. Dynamical evidence for a central mass concentration in the galaxy M87. Astrophys. J. 221, 731–744 (1978).

Schaye et al. 2010

Schaye J., Dalla Vecchia C., Booth C., Wiersma R., Theuns T., et al. The physics driving the cosmic star formation history. Mon. Not. Roy. Astron. Soc. 402, 1536–1560 (2010).

Schechter et al. 2014

Schechter P., Pooley D., Blackburne J., & Wambsganss J. A Calibration of the Stellar Mass Fundamental Plane at z \raisebox -0.5ex~0.5 Using the Micro-lensing-induced Flux Ratio Anomalies of Macro-lensed Quasars. Astrophys. J. 793, 96 (2014).

Schechter & Wambsganss 2002

Schechter P. & Wambsganss J. Quasar Microlensing at High Magnification and the Role of Dark Matter: Enhanced Fluctuations and Suppressed Saddle Points. Astrophys. J. 580, 685–695 (2002).

Schechter et al. 2004

Schechter P., Wambsganss J., & Lewis G. Qualitative Aspects of Quasar Microlensing with Two Mass Components: Magnification Patterns and Probability Distributions. Astrophys. J. 613, 77–85 (2004).

Schlesinger et al. 2012

Schlesinger K., Johnson J., Rockosi C., Lee Y., Morrison H., et al. The Metallicity Distribution Functions of SEGUE G and K Dwarfs: Constraints for Disk Chemical Evolution and Formation. Astrophys. J. 761, 160 (2012).

Schmidt 1959

Schmidt M. The Rate of Star Formation. Astrophys. J. 129, 243 (1959).

Schmidt 1963

Schmidt M. The Rate of Star Formation. II. The Rate of Formation of Stars of Different Mass. Astrophys. J. 137, 758 (1963).

Schneider 1984

Schneider P. The amplification caused by gravitational bending of light. Astron. & Astrophys. 140, 119–124 (1984).

Schneider 1985

Schneider P. A new formulation of gravitational lens theory, time-delay, and Fermat's principle. Astron. & Astrophys. 143, 413–420 (1985).

Schneider & Weiss 1992

Schneider P. & Weiss A. The gravitational lens equation near cusps. Astron. & Astrophys. 260, 1–13 (1992).

Schneider 1997

Schneider P. The cosmological lens equation and the equivalent single-plane gravitational lens. Mon. Not. Roy. Astron. Soc. 292, 673–678 (1997).

Schneider 2019

Schneider P. Generalized multi-plane gravitational lensing: time delays, recursive lens equation, and the mass-sheet transformation. Astron. & Astrophys. 624, A54 (2019).

Schulz et al. 2013

Schulz A., Dehnen W., Jungman G., & Tremaine S. Gravitational collapse in one dimension. Mon. Not. Roy. Astron. Soc. 431, 49–62 (2013).

Schwarzschild 1979

Schwarzschild M. A numerical model for a triaxial stellar system in dynamical equilibrium. Astrophys. J. 232, 236–247 (1979).

Schwarzschild et al. 1955

Schwarzschild M., Searle L., & Howard R. On the Colors of Subdwarfs. Astrophys. J. 122, 353 (1955).

Schwarzschild 1993

Schwarzschild M. Self-consistent Models for Galactic Halos. Astrophys. J. 409, 563 (1993).

Schweizer 1979

Schweizer F. Effects of seeing on the light distribution in the cores of elliptical galaxies. Astrophys. J. 233, 23–34 (1979).

Schödel et al. 2002

Schödel R., Ott T., Genzel R., Hofmann R., Lehnert M., et al. A star in a 15.2-year orbit around the supermassive black hole at the centre of the Milky Way. Nature 419, 694–696 (2002).

Schönrich & Binney 2009

Schönrich R. & Binney J. Chemical evolution with radial mixing. Mon. Not. Roy. Astron. Soc. 396, 203–222 (2009).

Schönrich et al. 2010

Schönrich R., Binney J., & Dehnen W. Local kinematics and the local standard of rest. Mon. Not. Roy. Astron. Soc. 403, 1829 (2010).

Scrimgeour et al. 2012

Scrimgeour M., Davis T., Blake C., James J., Poole G., et al. The WiggleZ Dark Energy Survey: the transition to large-scale cosmic homogeneity. Mon. Not. Roy. Astron. Soc. 425, 116–134 (2012).

Searle & Zinn 1978

Searle L. & Zinn R. Composition of halo clusters and the formation of the galactic halo. Astrophys. J. 225, 357–379 (1978).

Seitz & Schneider 1997

Seitz C. & Schneider P. Steps towards nonlinear cluster inversion through gravitational distortions. III. Including a redshift distribution of the sources. Astron. & Astrophys. 318, 687–699 (1997).

Sersic 1968

Sersic J. Atlas de Galaxias Australes. Observatorio Astronomico, Cordoba, Argentina (1968).

Shajib 2019

Shajib A. Unified lensing and kinematic analysis for any elliptical mass profile. Mon. Not. Roy. Astron. Soc. 488, 1387–1400 (2019).

Shapiro 1964

Shapiro I. Fourth Test of General Relativity. Phys. Rev. Lett. 13, 789–791 (1964).

Shapiro et al. 1971

Shapiro I., Ash M., Ingalls R., Smith W., Campbell D., et al. Fourth Test of General Relativity: New Radar Result. Phys. Rev. Lett. 26, 1132–1135 (1971).

Shapley et al. 2003

Shapley A., Steidel C., Pettini M., & Adelberger K. Rest-Frame Ultraviolet Spectra of z approx 3 Lyman Break Galaxies. Astrophys. J. 588, 65–89 (2003).

Sheldon et al. 2004

Sheldon E., Johnston D., Frieman J., Scranton R., McKay T., et al. The Galaxy-Mass Correlation Function Measured from Weak Lensing in the Sloan Digital Sky Survey. Astron. J. 127, 2544–2564 (2004).

Shull et al. 2012

Shull J., Smith B., & Danforth C. The Baryon Census in a Multiphase Intergalactic Medium: 30% of the Baryons May Still be Missing. Astrophys. J. 759, 23 (2012).

Shu 1969

Shu F. Models of Partially Relaxed Stellar Disks. Astrophys. J. 158, 505 (1969).

Siegel et al. 2019

Siegel D., Barnes J., & Metzger B. Collapsars as a major source of r-process elements. Nature 569, 241–244 (2019).

Silk & Rees 1998

Silk J. & Rees M. Quasars and galaxy formation. Astron. & Astrophys. 331, L1–L4 (1998).

Sluse et al. 2003

Sluse D., Surdej J., Claeskens J., Hutsemékers D., Jean C., et al. A quadruply imaged quasar with an optical Einstein ring candidate: 1RXS J113155.4-123155. Astron. & Astrophys. 406, L43–L46 (2003).

Smartt 2009

Smartt S. Progenitors of Core-Collapse Supernovae. Ann. Rev. Astron. Astrophys. 47, 63–106 (2009).

Smith et al. 2007

Smith M., Ruchti G., Helmi A., Wyse R., Fulbright J., et al. The RAVE survey: constraining the local Galactic escape speed. Mon. Not. Roy. Astron. Soc. 379, 755–772 (2007).

Smoot et al. 1992

Smoot G., Bennett C., Kogut A., Wright E., Aymon J., et al. Structure in the COBE Differential Microwave Radiometer First-Year Maps. Astrophys. J.l 396, L1 (1992).

Soldner 1804

Soldner J. Ueber die Ablenkung eines Lichtstrals von seiner geradlinigen Bewegung. Berliner Astron. Jahrb. 1804, 161 (1804).

Soltan 1982

Soltan A. Masses of quasars. Mon. Not. Roy. Astron. Soc. 200, 115–122 (1982).

Soucail et al. 1987

Soucail G., Fort B., Mellier Y., & Picat J. A blue ring-like structure in the center of the A 370 cluster of galaxies. Astron. & Astrophys. 172, L14–L16 (1987).

Spergel & Steinhardt 2000

Spergel D. & Steinhardt P. Observational Evidence for Self-Interacting Cold Dark Matter. Phys. Rev. Lett. 84, 3760–3763 (2000).

Springel et al. 2008a

Springel V., Wang J., Vogelsberger M., Ludlow A., Jenkins A., et al. The Aquarius Project: the subhaloes of galactic haloes. Mon. Not. Roy. Astron. Soc. 391, 1685–1711 (2008a).

Springel et al. 2008b

Springel V., White S., Frenk C., Navarro J., Jenkins A., et al. Prospects for detecting supersymmetric dark matter in the Galactic halo. Nature 456, 73–76 (2008b).

Steinmetz et al. 2006

Steinmetz M., Zwitter T., Siebert A., Watson F., Freeman K., et al. The Radial Velocity Experiment (RAVE): First Data Release. Astron. J. 132, 1645–1668 (2006).

Strauss et al. 2002

Strauss M., Weinberg D., Lupton R., Narayanan V., Annis J., et al. Spectroscopic Target Selection in the Sloan Digital Sky Survey: The Main Galaxy Sample. Astron. J. 124, 1810–1824 (2002).

Subramanian & Cowling 1986

Subramanian K. & Cowling S. On local conditions for multiple imaging by bounded, smooth gravitational lenses. Mon. Not. Roy. Astron. Soc. 219, 333–346 (1986).

Suyu et al. 2017

Suyu S., Bonvin V., Courbin F., Fassnacht C., Rusu C., et al. H0LiCOW - I. H_0 Lenses in COSMOGRAIL's Wellspring: program overview. Mon. Not. Roy. Astron. Soc. 468, 2590–2604 (2017).

Syer & Tremaine 1996

Syer D. & Tremaine S. Made-to-measure N-body systems. Mon. Not. Roy. Astron. Soc. 282, 223–233 (1996).

Sánchez et al. 2012

Sánchez S., Kennicutt R., Gil de Paz A., van de Ven G., V\'\ilchez J., et al. CALIFA, the Calar Alto Legacy Integral Field Area survey. I. Survey presentation. Astron. & Astrophys. 538, A8 (2012).

Talbot & Arnett 1971

Talbot J. & Arnett W. The Evolution of Galaxies. I. Formulation and Mathematical Behavior of the One-Zone Model. Astrophys. J. 170, 409 (1971).

Tessore & Metcalf 2015

Tessore N. & Metcalf R. The elliptical power law profile lens. Astron. & Astrophys. 580, A79 (2015).

Thomas et al. 2005

Thomas D., Maraston C., Bender R., & Mendes de Oliveira C. The Epochs of Early-Type Galaxy Formation as a Function of Environment. Astrophys. J. 621, 673–694 (2005).

Thomas et al. 2004

Thomas J., Saglia R., Bender R., Thomas D., Gebhardt K., et al. Mapping stationary axisymmetric phase-space distribution functions by orbit libraries. Mon. Not. Roy. Astron. Soc. 353, 391–404 (2004).

Thuan et al. 1975

Thuan T., Hart M., & Ostriker J. Galactic evolution. I. Single-zone models. Astrophys. J. 201, 756–772 (1975).

Tinsley 1974

Tinsley B. Constraints on models for chemical evolution in the solar neighborhood. Astrophys. J. 192, 629–641 (1974).

Tisserand et al. 2007

Tisserand P., Le Guillou L., Afonso C., Albert J., Andersen J., et al. Limits on the Macho content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds. Astron. & Astrophys. 469, 387–404 (2007).

Tojeiro et al. 2009

Tojeiro R., Wilkins S., Heavens A., Panter B., & Jimenez R. A Public Catalog of Stellar Masses, Star Formation and Metallicity Histories, and Dust Content from the Sloan Digital Sky Survey using VESPA. Astrophys. J. Supp. 185, 1–19 (2009).

Tolstoy et al. 2004

Tolstoy E., Irwin M., Helmi A., Battaglia G., Jablonka P., et al. Two Distinct Ancient Components in the Sculptor Dwarf Spheroidal Galaxy: First Results from the Dwarf Abundances and Radial Velocities Team. Astrophys. J.l 617, L119–L122 (2004).

Toomre 1963

Toomre A. On the Distribution of Matter Within Highly Flattened Galaxies. Astrophys. J. 138, 385 (1963).

Tremaine 1976

Tremaine S. The formation of the nuclei of galaxies. II. The local group. Astrophys. J. 203, 345–351 (1976).

Tremaine et al. 2002

Tremaine S., Gebhardt K., Bender R., Bower G., Dressler A., et al. The Slope of the Black Hole Mass versus Velocity Dispersion Correlation. Astrophys. J. 574, 740–753 (2002).

Tremaine et al. 1994

Tremaine S., Richstone D., Byun Y., Dressler A., Faber S., et al. A Family of Models for Spherical Stellar Systems. Astron. J. 107, 634 (1994).

Tremonti et al. 2004

Tremonti C., Heckman T., Kauffmann G., Brinchmann J., Charlot S., et al. The Origin of the Mass-Metallicity Relation: Insights from 53,000 Star-forming Galaxies in the Sloan Digital Sky Survey. Astrophys. J. 613, 898–913 (2004).

Treu et al. 2010

Treu T., Auger M., Koopmans L., Gavazzi R., Marshall P., et al. The Initial Mass Function of Early-Type Galaxies. Astrophys. J. 709, 1195–1202 (2010).

Treu & Koopmans 2002

Treu T. & Koopmans L. The Internal Structure and Formation of Early-Type Galaxies: The Gravitational Lens System MG 2016+112 at z = 1.004. Astrophys. J. 575, 87–94 (2002).

Truran & Cameron 1971

Truran J. & Cameron A. Evolutionary Models of Nucleosynthesis in the Galaxy. Astrophys. & Space Sci. 14, 179–222 (1971).

Turner et al. 1984

Turner E., Ostriker J., & Gott I. The statistics of gravitational lenses : the distributions of image angular separations and lens redshifts. Astrophys. J. 284, 1–22 (1984).

Tyson et al. 1990

Tyson J., Valdes F., & Wenk R. Detection of Systematic Gravitational Lens Galaxy Image Alignments: Mapping Dark Matter in Galaxy Clusters. Astrophys. J.l 349, L1 (1990).

Uebler et al. 2018

Uebler H., Genzel R., Tacconi L., Förster Schreiber N., Neri R., et al. Ionized and Molecular Gas Kinematics in a z = 1.4 Star-forming Galaxy. Astrophys. J.l 854, L24 (2018).

Valluri et al. 2010

Valluri M., Debattista V., Quinn T., & Moore B. The orbital evolution induced by baryonic condensation in triaxial haloes. Mon. Not. Roy. Astron. Soc. 403, 525–544 (2010).

Valluri & Merritt 1998

Valluri M. & Merritt D. Regular and Chaotic Dynamics of Triaxial Stellar Systems. Astrophys. J. 506, 686–711 (1998).

van Albada 1982

van Albada T. Dissipationless galaxy formation and the R to the 1/4-power law. Mon. Not. Roy. Astron. Soc. 201, 939–955 (1982).

van Albada et al. 1985

van Albada T., Bahcall J., Begeman K., & Sancisi R. Distribution of dark matter in the spiral galaxy NGC 3198. Astrophys. J. 295, 305–313 (1985).

van de Sande et al. 2017

van de Sande J., Bland-Hawthorn J., Brough S., Croom S., Cortese L., et al. The SAMI Galaxy Survey: revising the fraction of slow rotators in IFS galaxy surveys. Mon. Not. Roy. Astron. Soc. 472, 1272–1285 (2017).

van den Bergh 1958

van den Bergh S. Cepheids and galactic structure. Astron. J. 63, 492–496 (1958).

van den Bergh 1962

van den Bergh S. The frequency of stars with different metal abundances. Astron. J. 67, 486–490 (1962).

van den Bosch et al. 2008

van den Bosch R., van de Ven G., Verolme E., Cappellari M., & de Zeeuw P. Triaxial orbit based galaxy models with an application to the (apparent) decoupled core galaxy NGC 4365. Mon. Not. Roy. Astron. Soc. 385, 647–666 (2008).

van der Kruit & Freeman 2011

van der Kruit P. & Freeman K. Galaxy Disks. Ann. Rev. Astron. Astrophys. 49, 301 (2011).

van der Marel et al. 1998

van der Marel R., Cretton N., de Zeeuw P., & Rix H. Improved Evidence for a Black Hole in M32 from HST/FOS Spectra. II. Axisymmetric Dynamical Models. Astrophys. J. 493, 613–631 (1998).

van der Marel & Franx 1993

van der Marel R. & Franx M. A New Method for the Identification of Non-Gaussian Line Profiles in Elliptical Galaxies. Astrophys. J. 407, 525 (1993).

van Dokkum et al. 2016

van Dokkum P., Abraham R., Brodie J., Conroy C., Danieli S., et al. A High Stellar Velocity Dispersion and 100 Globular Clusters for the Ultra-diffuse Galaxy Dragonfly 44. Astrophys. J.l 828, L6 (2016).

van Dokkum et al. 2015

van Dokkum P., Abraham R., Merritt A., Zhang J., Geha M., et al. Forty-seven Milky Way-sized, Extremely Diffuse Galaxies in the Coma Cluster. Astrophys. J.l 798, L45 (2015).

Vitral & Mamon 2020

Vitral E. & Mamon G. A precise analytical approximation for the deprojection of the Sérsic profile. Astron. & Astrophys. 635, A20 (2020).

Volonteri et al. 2003

Volonteri M., Haardt F., & Madau P. The Assembly and Merging History of Supermassive Black Holes in Hierarchical Models of Galaxy Formation. Astrophys. J. 582, 559–573 (2003).

Walker et al. 2009a

Walker M., Mateo M., & Olszewski E. Stellar Velocities in the Carina, Fornax, Sculptor, and Sextans dSph Galaxies: Data From the Magellan/MMFS Survey. Astron. J. 137, 3100–3108 (2009a).

Walker et al. 2009b

Walker M., Mateo M., Olszewski E., Peñarrubia J., Evans N., et al. A Universal Mass Profile for Dwarf Spheroidal Galaxies? Astrophys. J. 704, 1274–1287 (2009b).

Walker & Peñarrubia 2011

Walker M. & Peñarrubia J. A Method for Measuring (Slopes of) the Mass Profiles of Dwarf Spheroidal Galaxies. Astrophys. J. 742, 20 (2011).

Wallerstein 1962

Wallerstein G. Abundances in G. Dwarfs.VI. a Survey of Field Stars. Astrophys. J. Supp. 6, 407 (1962).

Walsh et al. 1979

Walsh D., Carswell R., & Weymann R. 0957+561 A, B: twin quasistellar objects or gravitational lens? Nature 279, 381–384 (1979).

Walter et al. 2008

Walter F., Brinks E., de Blok W., Bigiel F., Kennicutt J., et al. THINGS: The H I Nearby Galaxy Survey. Astron. J. 136, 2563–2647 (2008).

Webbink 1984

Webbink R. Double white dwarfs as progenitors of R Coronae Borealis stars and type I supernovae. Astrophys. J. 277, 355–360 (1984).

Weijmans et al. 2014

Weijmans A., de Zeeuw P., Emsellem E., Krajnović D., Lablanche P., et al. The ATLAS 3D project - XXIV. The intrinsic shape distribution of early-type galaxies. Mon. Not. Roy. Astron. Soc. 444, 3340–3356 (2014).

Weinberg 2017

Weinberg D. On the Deuterium-to-hydrogen Ratio of the Interstellar Medium. Astrophys. J. 851, 25 (2017).

Weinberg et al. 2017

Weinberg D., Andrews B., & Freudenburg J. Equilibrium and Sudden Events in Chemical Evolution. Astrophys. J. 837, 183 (2017).

Weinberg 1999

Weinberg M. An Adaptive Algorithm for N-Body Field Expansions. Astron. J. 117, 629–637 (1999).

Weiner et al. 2009

Weiner B., Coil A., Prochaska J., Newman J., Cooper M., et al. Ubiquitous Outflows in DEEP2 Spectra of Star-Forming Galaxies at z = 1.4. Astrophys. J. 692, 187–211 (2009).

Weymann et al. 1980

Weymann R., Latham D., Angel J., Green R., Liebert J., et al. The triple QSO PG1115 + 08: another probable gravitational lens. Nature 285, 641–643 (1980).

Whelan & Iben 1973

Whelan J. & Iben J. Binaries and Supernovae of Type I. Astrophys. J. 186, 1007–1014 (1973).

Wielen 1974

Wielen R. The Kinematics and Ages of Stars in Gliese's Catalogue. Highlights of Astronomy 3, 395–407 (1974).

Williams et al. 2004

Williams J., Turyshev S., & Boggs D. Progress in Lunar Laser Ranging Tests of Relativistic Gravity. Phys. Rev. Lett. 93, 261101 (2004).

Willman et al. 2005

Willman B., Dalcanton J., Martinez-Delgado D., West A., Blanton M., et al. A New Milky Way Dwarf Galaxy in Ursa Major. Astrophys. J.l 626, L85–L88 (2005).

Will 2014

Will C. The Confrontation between General Relativity and Experiment. Living Reviews in Relativity 17, 4 (2014).

Wilson 1975

Wilson C. Dynamical models of elliptical galaxies. Astron. J. 80, 175–187 (1975).

Wisdom & Holman 1991

Wisdom J. & Holman M. Symplectic maps for the N-body problem. Astron. J. 102, 1528–1538 (1991).

Wittman et al. 2000

Wittman D., Tyson J., Kirkman D., Dell'Antonio I., & Bernstein G. Detection of weak gravitational lensing distortions of distant galaxies by cosmic dark matter at large scales. Nature 405, 143–148 (2000).

Wojtak et al. 2005

Wojtak R., Lokas E., Gottlöber S., & Mamon G. Radial velocity moments of dark matter haloes. Mon. Not. Roy. Astron. Soc. 361, L1–L5 (2005).

Wolf et al. 2010

Wolf J., Martinez G., Bullock J., Kaplinghat M., Geha M., et al. Accurate masses for dispersion-supported galaxies. Mon. Not. Roy. Astron. Soc. 406, 1220–1237 (2010).

Wyithe et al. 2000

Wyithe J., Webster R., & Turner E. Limits on the microlens mass function of Q2237+0305. Mon. Not. Roy. Astron. Soc. 315, 51–61 (2000).

Xue et al. 2008

Xue X., Rix H., Zhao G., Re Fiorentin P., Naab T., et al. The Milky Way's Circular Velocity Curve to 60 kpc and an Estimate of the Dark Matter Halo Mass from the Kinematics of 2400 SDSS Blue Horizontal-Branch Stars. Astrophys. J. 684, 1143–1158 (2008).

Yanny et al. 2009

Yanny B., Rockosi C., Newberg H., Knapp G., Adelman-McCarthy J., et al. SEGUE: A Spectroscopic Survey of 240,000 Stars with g = 14-20. Astron. J. 137, 4377–4399 (2009).

York et al. 2000

York D., Adelman J., Anderson J., Anderson S., Annis J., et al. The Sloan Digital Sky Survey: Technical Summary. Astron. J. 120, 1579–1587 (2000).

Young et al. 1981

Young P., Deverill R., Gunn J., Westphal J., & Kristian J. The triple quasar Q1115+080A, B, C : a quintuple gravitational lens image. Astrophys. J. 244, 723–735 (1981).

Young et al. 1978

Young P., Westphal J., Kristian J., Wilson C., & Landauer F. Evidence for a supermassive object in the nucleus of the galaxy M87 from SIT and CCD area photometry. Astrophys. J. 221, 721–730 (1978).

Zel'dovich 1964

Zel'dovich Y. The Fate of a Star and the Evolution of Gravitational Energy Upon Accretion. Soviet Physics Doklady 9, 195 (1964).

Zettl 2010

Zettl A. Sturm-Liouville Theory. Mathematical surveys and monographs. American Mathematical Society, Providence, Rhode Island (2010).

Zhang et al. 2013

Zhang L., Rix H., van de Ven G., Bovy J., Liu C., et al. The Gravitational Potential near the Sun from SEGUE K-dwarf Kinematics. Astrophys. J. 772, 108 (2013).

Zhang et al. 2009

Zhang W., Li C., Kauffmann G., Zou H., Catinella B., et al. Estimating the HI gas fractions of galaxies in the local Universe. Mon. Not. Roy. Astron. Soc. 397, 1243 (2009).

Zheng et al. 2012

Zheng W., Postman M., Zitrin A., Moustakas J., Shu X., et al. A magnified young galaxy from about 500 million years after the Big Bang. Nature 489, 406–408 (2012).

Zwicky 1933

Zwicky F. Die Rotverschiebung von extragalaktischen Nebeln. Helvetica Physica Acta 6, 110–127 (1933).

Zwicky 1937a

Zwicky F. Nebulae as Gravitational Lenses. Physical Review 51, 290–290 (1937a).

Zwicky 1937b

Zwicky F. On the Probability of Detecting Nebulae Which Act as Gravitational Lenses. Physical Review 51, 679–679 (1937b).