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The gravitational capture of a stellar-mass compact object (CO) by a supermassive black hole is a unique probe of gravity in the strong field regime.
S. Chandrasekhar, Principles of stellar dynamics. Physical Sciences Data (1942)
1942
Earlier work this paper cites.
P.C. Peters, J. Mathews, Gravitational Radiation from Point Masses in a Keplerian Orbit. Physical Review 131
1963
Earlier work this paper cites.
P.C. Peters, Gravitational Radiation and the Motion of Two Point Masses. Physical Review 136
1964
Earlier work this paper cites.
R.H. Boyer, R.W. Lindquist, Maximal Analytic Extension of the Kerr Metric. Journal of Mathematical Physics 8
1967
Earlier work this paper cites.
C.W. Helstrom, Statistical Theory of Signal Detection
1968
Earlier work this paper cites.
R.B. Larson, A method for computing the evolution of star clusters. MNRAS 147
1970
Earlier work this paper cites.
L.J. Spitzer, M.H. Hart, Random gravitational encounters and the evolution of spherical systems. i. method. ApJ 164
1971
Earlier work this paper cites.
R.O. Hansen, Post-Newtonian Gravitational Radiation from Point Masses in a Hyperbolic Kepler Orbit. Phys. Rev. D 5
1972
Earlier work this paper cites.
D. Lynden-Bell, A.J. Kalnajs, On the generating mechanism of spiral structure. MNRAS 157
1972
Earlier work this paper cites.
P.J.E. Peebles, Star Distribution Near a Collapsed Object. ApJ 178
1972
Earlier work this paper cites.
M. Hénon, Collisional dynamics of spherical stellar systems, in Dynamical structure and evolution of stellar systems, Lectures of the 3rd Advanced Course of the Swiss Society for Astronomy and Astrophysics (SSAA)
1973
Earlier work this paper cites.
C.W. Misner, K.S. Thorne, J.A. Wheeler, Gravitation
1973
Earlier work this paper cites.
S.J. Aarseth, K. Zare, A regularization of the three-body problem. Celestial Mechanics 10
1974
Earlier work this paper cites.
M. Hénon, Two Recent Developments Concerning the Monte Carlo Method, in IAU Symp. 69: Dynamics of Stellar Systems
1975
Earlier work this paper cites.
J.N. Bahcall, R.A. Wolf, Star distribution around a massive black hole in a globular cluster. ApJ 209
1976
Earlier work this paper cites.
J. Ehlers, A. Rosenblum, J.N. Goldberg, P. Havas, Comments on gravitational radiation damping and energy loss in binary systems. ApJ Lett. 208
1976
Earlier work this paper cites.
J. Frank, M.J. Rees, Effects of massive central black holes on dense stellar systems. MNRAS 176
1976
Earlier work this paper cites.
J.N. Bahcall, R.A. Wolf, The star distribution around a massive black hole in a globular cluster. II unequal star masses. ApJ 216
1977
Earlier work this paper cites.
A.P. Lightman, S.L. Shapiro, The distribution and consumption rate of stars around a massive, collapsed object. ApJ 211
1977
Earlier work this paper cites.
W.H. Press, Gravitational radiation from sources which extend into their own wave zone. Ph.Rv.D 15
1977
Earlier work this paper cites.
H. Cohn, Late core collapse in star clusters and the gravothermal instability. ApJ 242
1980
Earlier work this paper cites.
D.N.C. Lin, S. Tremaine, A reinvestigation of the standard model for the dynamics of a massive black hole in a globular cluster. ApJ 242
1980
Earlier work this paper cites.
W.C. Saslaw, Gravitational physics of stellar and galactic systems
1985
Earlier work this paper cites.
L. Spitzer, Dynamical evolution of globular clusters
1987
Earlier work this paper cites.
K.S. Thorne, Gravitational radiation., ed. by S.W. Hawking, W. Israel 1987, pp. 330–458
1987
Earlier work this paper cites.
J.G. Hills, Hyper-velocity and tidal stars from binaries disrupted by a massive galactic black hole. Nat 331
1988
Earlier work this paper cites.
M.J. Rees, Tidal disruption of stars by black holes of 10 to the 6th-10 to the 8th solar masses in nearby galaxies. Nat 333
1988
Earlier work this paper cites.
G.D. Quinlan, S.L. Shapiro, Dynamical evolution of dense clusters of compact stars. ApJ 343
1989
Earlier work this paper cites.
B.F. Schutz, REVIEW ARTICLE: Gravitational wave sources and their detectability. Classical and Quantum Gravity 6
1989
Earlier work this paper cites.
D.F. Chernoff, M.D. Weinberg, Evolution of globular clusters in the Galaxy. ApJ 351
1990
Earlier work this paper cites.
L.S. Finn, Detection, measurement, and gravitational radiation. prd 46
1992
Earlier work this paper cites.
G. Schaller, D. Schaerer, G. Meynet, A. Maeder, New grids of stellar models from 0.8 to 120 solar masses at z = 0.020 and z = 0.001. A&AS 96
1992
Earlier work this paper cites.
W. Dehnen, A Family of Potential-Density Pairs for Spherical Galaxies and Bulges. MNRAS 265
1993
Earlier work this paper cites.
C. Cutler, D. Kennefick, E. Poisson, Gravitational radiation reaction for bound motion around a Schwarzschild black hole. Ph. Rev. D 50
1994
Earlier work this paper cites.
M. Giersz, D.C. Heggie, Statistics of n-body simulations - part one - equal masses before core collapse. MNRAS 268
1994
Earlier work this paper cites.
M.G. Haehnelt, Low-Frequency Gravitational Waves from Supermassive Black-Holes. MNRAS 269
1994
Earlier work this paper cites.
G. Meynet, A. Maeder, G. Schaller, D. Schaerer, C. Charbonnel, Grids of massive stars with high mass loss rates. v. from 12 to 120 m_ { \{ sun } \} _ at z=0.001, 0.004, 0.008, 0.020 and 0.040. A&AS 103
1994
Earlier work this paper cites.
S. Tremaine, D.O. Richstone, Y. Byun, A. Dressler, S.M. Faber, C. Grillmair, J. Kormendy, T.R. Lauer, A family of models for spherical stellar systems. AJ 107
1994
Earlier work this paper cites.
D. Hils, P.L. Bender, Gradual approach to coalescence for compact stars orbiting massive black holes. ApJ Lett. 445
1995
Earlier work this paper cites.
R. Spurzem, S.J. Aarseth, Direct collisional simulation of 100000 particles past core collapse. MNRAS 282
1996
Earlier work this paper cites.
H. Asada, T. Futamase, Chapter 2. Post-Newtonian Approximation —Its Foundation and Applications—. Progress of Theoretical Physics Supplement 128
1997
Earlier work this paper cites.
S. Sigurdsson, M.J. Rees, Capture of stellar mass compact objects by massive black holes in galactic cusps. Mon. Not. R. Astron. Soc. 284
1997
Earlier work this paper cites.
M. Giersz, Monte carlo simulations of star clusters - i. first results. MNRAS 298
1998
Earlier work this paper cites.
S.F. Portegies Zwart, P. Hut, J. Makino, S.L.W. McMillan, On the dissolution of evolving star clusters. A&A 337
1998
Earlier work this paper cites.
K. Takahashi, S.F. Portegies Zwart, The disruption of globular star clusters in the galaxy: A comparative analysis between fokker-planck and n-body models. ApJ Lett. 503
1998
Earlier work this paper cites.
S.J. Aarseth, From NBODY1 to NBODY6: The Growth of an Industry. The Publications of the Astronomical Society of the Pacific 111
1999
Earlier work this paper cites.
A. Buonanno, T. Damour, Effective one-body approach to general relativistic two-body dynamics. Ph. Rv. D 59
1999
Earlier work this paper cites.
C. Charbonnel, W. Däppen, D. Schaerer, P.A. Bernasconi, A. Maeder, G. Meynet, N. Mowlavi, Grids of stellar models. VIII. from 0.4 to 1.0 { \{ M_ { \{ sun } \} } \} at z=0.020 and z=0.001, with the mhd equation of state. A&AS 135
1999
Earlier work this paper cites.
J. Magorrian, S. Tremaine, Rates of tidal disruption of stars by massive central black holes. MNRAS 309
1999
Earlier work this paper cites.
R. Spurzem, Direct n n -body simulations. Journal of Computational and Applied Mathematics 109
1999
Earlier work this paper cites.
D. Syer, A. Ulmer, Tidal disruption rates of stars in observed galaxies. MNRAS 306
1999
Earlier work this paper cites.
G. Chabrier, I. Baraffe, Theory of low-mass stars and substellar objects. ARA&A 38
2000
Earlier work this paper cites.
L.S. Finn, K.S. Thorne, Gravitational waves from a compact star in a circular, inspiral orbit, in the equatorial plane of a massive, spinning black hole, as observed by LISA. Phys. Rev. D 62
2000
Earlier work this paper cites.
T. Alexander, M. Livio, Tidal Scattering of Stars on Supermassive Black Holes in Galactic Centers. ApJ Lett. 560
2001
Earlier work this paper cites.
P. Amaro-Seoane, R. Spurzem, The loss-cone problem in dense nuclei. MNRAS 327
2001
Earlier work this paper cites.
S.A. Hughes, Evolution of circular, nonequatorial orbits of Kerr black holes due to gravitational-wave emission. II. Inspiral trajectories and gravitational waveforms. Ph. Rev. D 64
2001
Earlier work this paper cites.
P. Kroupa, On the variation of the initial mass function. Mon. Not. R. Astron. Soc. 322
2001
Earlier work this paper cites.
V. Pierro, I.M. Pinto, A.D. Spallicci, E. Laserra, F. Recano, Fast and accurate computational tools for gravitational waveforms from binary stars with any orbital eccentricity. MNRAS 325
2001
Earlier work this paper cites.
K. Gebhardt, R.M. Rich, L.C. Ho, A 20000 M ⊙ 20000M_{\odot} Black Hole in the Stellar Cluster G1. ApJ Lett. 578
2002
Cited alongside, same era.
J. Gerssen, R.P. van der Marel, K. Gebhardt, P. Guhathakurta, R.C. Peterson, C. Pryor, Hubble Space Telescope Evidence for an Intermediate-Mass Black Hole in the Globular Cluster M15. II. Kinematic Analysis and Dynamical Modeling. AJ 124
2002
Cited alongside, same era.
K. Glampedakis, D. Kennefick, Zoom and whirl: Eccentric equatorial orbits around spinning black holes and their evolution under gravitational radiation reaction. Phys. Rev. D 66
2002
Cited alongside, same era.
W. Schmidt, Celestial mechanics in Kerr spacetime. Classical and Quantum Gravity 19
2002
Cited alongside, same era.
S.J. Aarseth, Gravitational N-Body Simulations
2003
Cited alongside, same era.
J. Kormendy, L.C. Ho, Coevolution (Or Not) of Supermassive Black Holes and Host Galaxies. ARA&A 51
2013
Later among the works it cites.
J. Kormendy, L.C. Ho, Coevolution (Or Not) of Supermassive Black Holes and Host Galaxies. Annu. Rev. Astron. Astrophys. 51
2013
Later among the works it cites.
P. Kroupa, C. Weidner, J. Pflamm-Altenburg, I. Thies, J. Dabringhausen, M. Marks, T. Maschberger, The Stellar and Sub-Stellar Initial Mass Function of Simple and Composite Populations, ed. by T.D. Oswalt, G. Gilmore 2013, p. 115. doi:10.1007/978-94-007-5612-0_4
2013
Later among the works it cites.
N. Lützgendorf, M. Kissler-Patig, N. Neumayer, H. Baumgardt, E. Noyola, P.T. de Zeeuw, K. Gebhardt, B. Jalali, A. Feldmeier, M •
2013
Later among the works it cites.
A.H. Mroue, et al., Catalog of 174 Binary Black Hole Simulations for Gravitational Wave Astronomy. Phys. Rev. Lett. 111
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E.N. Dorband, M. Hemsendorf, D. Merritt, Systolic and hyper-systolic algorithms for the gravitational N-body problem, with an application to Brownian motion. Journal of Computational Physics 185
2003
Cited alongside, same era.
L. Wen, On the Eccentricity Distribution of Coalescing Black Hole Binaries Driven by the Kozai Mechanism in Globular Clusters. ApJ 598
2003
Cited alongside, same era.
P. Amaro-Seoane, M. Freitag, R. Spurzem, Accretion of stars on to a massive black hole: A realistic diffusion model and numerical studies. MNRAS (2004)
2004
Cited alongside, same era.
L. Barack, C. Cutler, LISA capture sources: Approximate waveforms, signal-to-noise ratios, and parameter estimation accuracy. Phys. Rev. D 69
2004
Cited alongside, same era.
K. Gültekin, M.C. Miller, D.P. Hamilton, Growth of Intermediate-Mass Black Holes in Globular Clusters. ApJ 616
2004
Cited alongside, same era.
J. Kormendy, The Stellar-Dynamical Search for Supermassive Black Holes in Galactic Nuclei, in Coevolution of Black Holes and Galaxies
2004
Cited alongside, same era.
J. Wang, D. Merritt, Revised Rates of Stellar Disruption in Galactic Nuclei. ApJ 600
2004
Cited alongside, same era.
2013
Later among the works it cites.
B. Bar-Or, T. Alexander, The statistical mechanics of relativistic orbits around a massive black hole. Classical and Quantum Gravity 31
2014
Later among the works it cites.
L. Blanchet, Gravitational Radiation from Post-Newtonian Sources and Inspiralling Compact Binaries. Living Rev. Rel. 17
2014
Later among the works it cites.
N.W.C. Leigh, N. Lützgendorf, A.M. Geller, T.J. Maccarone, C. Heinke, A. Sesana, On the coexistence of stellar-mass and intermediate-mass black holes in globular clusters. MNRAS 444
2014
Later among the works it cites.
A. Sesana, E. Barausse, M. Dotti, E.M. Rossi, Linking the Spin Evolution of Massive Black Holes to Galaxy Kinematics. ApJ 794
2014
Later among the works it cites.
C.M. Will, Incorporating post-Newtonian effects in N-body dynamics. Ph. Rv. D 89
2014
Later among the works it cites.
P. Amaro-Seoane, J.R. Gair, A. Pound, S.A. Hughes, C.F. Sopuerta, Research Update on Extreme-Mass-Ratio Inspirals. Journal of Physics Conference Series 610
2015
Later among the works it cites.
A.J.K. Chua, J.R. Gair, Improved analytic extreme-mass-ratio inspiral model for scoping out eLISA data analysis. Classical and Quantum Gravity 32
2015
Later among the works it cites.
M. Giersz, N. Leigh, A. Hypki, N. Lützgendorf, A. Askar, MOCCA code for star cluster simulations - IV. A new scenario for intermediate mass black hole formation in globular clusters. MNRAS 454
2015
Later among the works it cites.
J. Hong, H.M. Lee, Black hole binaries in galactic nuclei and gravitational wave sources. MNRAS 448
2015
Later among the works it cites.
S.A. Teukolsky, The Kerr metric. Classical and Quantum Gravity 32
2015
Later among the works it cites.
P. Bianchini, G. van de Ven, M.A. Norris, E. Schinnerer, A.L. Varri, A novel look at energy equipartition in globular clusters. MNRAS 458
2016
Later among the works it cites.
C.J. Conselice, A. Wilkinson, K. Duncan, A. Mortlock, The Evolution of Galaxy Number Density at z ¡ 8 and Its Implications. ApJ 830
2016
Later among the works it cites.
C.-J. Haster, F. Antonini, V. Kalogera, I. Mandel, N-Body Dynamics of Intermediate Mass-ratio Inspirals in Star Clusters. ApJ 832
2016
Later among the works it cites.
M. MacLeod, M. Trenti, E. Ramirez-Ruiz, The Close Stellar Companions to Intermediate-mass Black Holes. ApJ 819
2016
Later among the works it cites.
S. Sridhar, J.R. Touma, Stellar dynamics around a massive black hole - II. Resonant relaxation. Mon. Not. R. Astron. Soc. 458
2016
Later among the works it cites.
P. Amaro-Seoane, H. Audley, S. Babak, J. Baker, E. Barausse, P. Bender, E. Berti, P. Binetruy, M. Born, D. Bortoluzzi, J. Camp, C. Caprini, V. Cardoso, M. Colpi, J. Conklin, N. Cornish, C. Cutler, K. Danzmann, R. Dolesi, L. Ferraioli, V. Ferroni, E. Fitzsimons, J. Gair, L. Gesa Bote, D. Giardini, F. Gibert, C. Grimani, H. Halloin, G. Heinzel, T. Hertog, M. Hewitson, K. Holley-Bockelmann, D. Hollington, M. Hueller, H. Inchauspe, P. Jetzer, N. Karnesis, C. Killow, A. Klein, B. Klipstein, N. Korsakova, S.L. Larson, J. Livas, I. Lloro, N. Man, D. Mance, J. Martino, I. Mateos, K. McKenzie, S.T. McWilliams, C. Miller, G. Mueller, G. Nardini, G. Nelemans, M. Nofrarias, A. Petiteau, P. Pivato, E. Plagnol, E. Porter, J. Reiche, D. Robertson, N. Robertson, E. Rossi, G. Russano, B. Schutz, A. Sesana, D. Shoemaker, J. Slutsky, C.F. Sopuerta, T. Sumner, N. Tamanini, I. Thorpe, M. Troebs, M. Vallisneri, A. Vecchio, D. Vetrugno, S. Vitale, M. Volonteri, G. Wanner, H. Ward, P. Wass, W. Weber, J. Ziemer, P. Zweifel, Laser Interferometer Space Antenna. ArXiv e-prints (2017)
2017
Later among the works it cites.
S. Babak, J. Gair, A. Sesana, E. Barausse, C.F. Sopuerta, C.P.L. Berry, E. Berti, P. Amaro-Seoane, A. Petiteau, A. Klein, Science with the space-based interferometer LISA. V. Extreme mass-ratio inspirals. Phys. Rev. D 95
2017
Later among the works it cites.
A. Bohé, L. Shao, A. Taracchini, A. Buonanno, S. Babak, I.W. Harry, I. Hinder, S. Ossokine, M. Pürrer, V. Raymond, T. Chu, H. Fong, P. Kumar, H.P. Pfeiffer, M. Boyle, D.A. Hemberger, L.E. Kidder, G. Lovelace, M.A. Scheel, B. Szilágyi, Improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors. Ph. Rv. D 95
2017
Later among the works it cites.
A.J.K. Chua, C.J. Moore, J.R. Gair, Augmented kludge waveforms for detecting extreme-mass-ratio inspirals. Phys. Rev. D 96
2017
Later among the works it cites.
M. Mezcua, Observational evidence for intermediate-mass black holes. International Journal of Modern Physics D 26
2017
Later among the works it cites.
P. Amaro-Seoane, Relativistic dynamics and extreme mass ratio inspirals. Living Reviews in Relativity 21
2018
Later among the works it cites.
H. Baumgardt, P. Amaro-Seoane, R. Schödel, The distribution of stars around the Milky Way’s central black hole. III. Comparison with simulations. Astron. Astrophys. 609
2018
Later among the works it cites.
E. Berti, K. Yagi, H. Yang, N. Yunes, Extreme Gravity Tests with Gravitational Waves from Compact Binary Coalescences: (II) Ringdown. Gen. Rel. Grav. 50
2018
Later among the works it cites.
E. Gallego-Cano, R. Schödel, H. Dong, F. Nogueras-Lara, A.T. Gallego-Calvente, P. Amaro-Seoane, H. Baumgardt, The distribution of stars around the Milky Way’s central black hole. I. Deep star counts. Astron. Astrophys. 609
2018
Later among the works it cites.
M. Maggiore, Gravitational Waves: Volume 2: Astrophysics and Cosmology
2018
Later among the works it cites.
R. Schödel, E. Gallego-Cano, H. Dong, F. Nogueras-Lara, A.T. Gallego-Calvente, P. Amaro-Seoane, H. Baumgardt, The distribution of stars around the Milky Way’s central black hole. II. Diffuse light from sub-giants and dwarfs. Astron. Astrophys. 609
2018
Later among the works it cites.
P. Amaro-Seoane, Extremely large mass-ratio inspirals. Phys.Rev.D. 99
2019
Later among the works it cites.
M. Arca Sedda, A. Askar, M. Giersz, MOCCA-SURVEY Database I. Intermediate mass black holes in Milky Way globular clusters and their connection to supermassive black holes. arXiv e-prints, 1905–00902 (2019)
2019
Later among the works it cites.
C. Berry, S. Hughes, C. Sopuerta, A. Chua, A. Heffernan, K. Holley-Bockelmann, D. Mihaylov, C. Miller, A. Sesana, The unique potential of extreme mass-ratio inspirals for gravitational-wave astronomy. Bull. Am. Astron. Soc. 51
2019
Later among the works it cites.
Event Horizon Telescope Collaboration, K. Akiyama, A. Alberdi, W. Alef, K. Asada, R. Azulay, A.-K. Baczko, D. Ball, M. Baloković, J. Barrett, D. Bintley, L. Blackburn, W. Boland, K.L. Bouman, G.C. Bower, M. Bremer, C.D. Brinkerink, R. Brissenden, S. Britzen, A.E. Broderick, D. Broguiere, T. Bronzwaer, D.-Y. Byun, J.E. Carlstrom, A. Chael, C.-k. Chan, S. Chatterjee, K. Chatterjee, M.-T. Chen, Y. Chen, I. Cho, P. Christian, J.E. Conway, J.M. Cordes, G.B. Crew, Y. Cui, J. Davelaar, M. De Laurentis, R. Deane, J. Dempsey, G. Desvignes, J. Dexter, S.S. Doeleman, R.P. Eatough, H. Falcke, V.L. Fish, E. Fomalont, R. Fraga-Encinas, W.T. Freeman, P. Friberg, C.M. Fromm, J.L. Gómez, P. Galison, C.F. Gammie, R. García, O. Gentaz, B. Georgiev, C. Goddi, R. Gold, M. Gu, M. Gurwell, K. Hada, M.H. Hecht, R. Hesper, L.C. Ho, P. Ho, M. Honma, C.-W.L. Huang, L. Huang, D.H. Hughes, S. Ikeda, M. Inoue, S. Issaoun, D.J. James, B.T. Jannuzi, M. Janssen, B. Jeter, W. Jiang, M.D. Johnson, S. Jorstad, T. Jung, M. Karami, R. Karuppusamy, T. Kawashima, G.K. Keating, M. Kettenis, J.-Y. Kim, J. Kim, J. Kim, M. Kino, J.Y. Koay, P.M. Koch, S. Koyama, M. Kramer, C. Kramer, T.P. Krichbaum, C.-Y. Kuo, T.R. Lauer, S.-S. Lee, Y.-R. Li, Z. Li, M. Lindqvist, K. Liu, E. Liuzzo, W.-P. Lo, A.P. Lobanov, L. Loinard, C. Lonsdale, R.-S. Lu, N.R. MacDonald, J. Mao, S. Markoff, D.P. Marrone, A.P. Marscher, I. Martí-Vidal, S. Matsushita, L.D. Matthews, L. Medeiros, K.M. Menten, Y. Mizuno, I. Mizuno, J.M. Moran, K. Moriyama, M. Moscibrodzka, C. Müller, H. Nagai, N.M. Nagar, M. Nakamura, R. Narayan, G. Narayanan, I. Natarajan, R. Neri, C. Ni, A. Noutsos, H. Okino, H. Olivares, G.N. Ortiz-León, T. Oyama, F. Özel, D.C.M. Palumbo, N. Patel, U.-L. Pen, D.W. Pesce, V. Piétu, R. Plambeck, A. PopStefanija, O. Porth, B. Prather, J.A. Preciado-López, D. Psaltis, H.-Y. Pu, V. Ramakrishnan, R. Rao, M.G. Rawlings, A.W. Raymond, L. Rezzolla, B. Ripperda, F. Roelofs, A. Rogers, E. Ros, M. Rose, A. Roshanineshat, H. Rottmann, A.L. Roy, C. Ruszczyk, B.R. Ryan, K.L.J. Rygl, S. Sánchez, D. Sánchez-Arguelles, M. Sasada, T. Savolainen, F.P. Schloerb, K.-F. Schuster, L. Shao, Z. Shen, D. Small, B.W. Sohn, J. SooHoo, F. Tazaki, P. Tiede, R.P.J. Tilanus, M. Titus, K. Toma, P. Torne, T. Trent, S. Trippe, S. Tsuda, I. van Bemmel, H.J. van Langevelde, D.R. van Rossum, J. Wagner, J. Wardle, J. Weintroub, N. Wex, R. Wharton, M. Wielgus, G.N. Wong, Q. Wu, K. Young, A. Young, Z. Younsi, F. Yuan, Y.-F. Yuan, J.A. Zensus, G. Zhao, S.-S. Zhao, Z. Zhu, J.-C. Algaba, A. Allardi, R. Amestica, J. Anczarski, U. Bach, F.K. Baganoff, C. Beaudoin, B.A. Benson, R. Berthold, J.M. Blanchard, R. Blundell, S. Bustamente, R. Cappallo, E. Castillo-Domínguez, C.-C. Chang, S.-H. Chang, S.-C. Chang, C.-C. Chen, R. Chilson, T.C. Chuter, R. Córdova Rosado, I.M. Coulson, T.M. Crawford, J. Crowley, J. David, M. Derome, M. Dexter, S. Dornbusch, K.A. Dudevoir, S.A. Dzib, A. Eckart, C. Eckert, N.R. Erickson, W.B. Everett, A. Faber, J.R. Farah, V. Fath, T.W. Folkers, D.C. Forbes, R. Freund, A.I. Gómez-Ruiz, D.M. Gale, F. Gao, G. Geertsema, D.A. Graham, C.H. Greer, R. Grosslein, F. Gueth, D. Haggard, N.W. Halverson, C.-C. Han, K.-C. Han, J. Hao, Y. Hasegawa, J.W. Henning, A. Hernández-Gómez, R. Herrero-Illana, S. Heyminck, A. Hirota, J. Hoge, Y.-D. Huang, C.M.V. Impellizzeri, H. Jiang, A. Kamble, R. Keisler, K. Kimura, Y. Kono, D. Kubo, J. Kuroda, R. Lacasse, R.A. Laing, E.M. Leitch, C.-T. Li, L.C.-C. Lin, C.-T. Liu, K.-Y. Liu, L.-M. Lu, R.G. Marson, P.L. Martin-Cocher, K.D. Massingill, C. Matulonis, M.P. McColl, S.R. McWhirter, H. Messias, Z. Meyer-Zhao, D. Michalik, A. Montaña, W. Montgomerie, M. Mora-Klein, D. Muders, A. Nadolski, S. Navarro, J. Neilsen, C.H. Nguyen, H. Nishioka, T. Norton, M.A. Nowak, G. Nystrom, H. Ogawa, P. Oshiro, T. Oyama, H. Parsons, S.N. Paine, J. Peñalver, N.M. Phillips, M. Poirier, N. Pradel, R.A. Primiani, P.A. Raffin, A.S. Rahlin, G. Reiland, C. Risacher, I. Ruiz, A.F. Sáez-Madaín, R. Sassella, P. Schellart, P. Shaw, K.M. Silva, H. Shiokawa, D.R. Smith, W. Snow, K. Souccar, D. Sousa, T.K. Sridharan, R. Srinivasan, W. Stahm, A.A. Stark, K. Story, S.T. Timmer, L. Vertatschitsch, C. Walther, T.-S. Wei, N. Whitehorn, A.R. Whitney, D.P. Woody, J.G.A. Wouterloot, M. Wright, P. Yamaguchi, C.-Y. Yu, M. Zeballos, S. Zhang, L. Ziurys, First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole. Astrophys. J. Lett. 875
2019
Later among the works it cites.
O.A. Hannuksela, K.W.K. Wong, R. Brito, E. Berti, T.G.F. Li, Probing the existence of ultralight bosons with a single gravitational-wave measurement. Nature Astron. 3
2019
Later among the works it cites.
T. Panamarev, A. Just, R. Spurzem, P. Berczik, L. Wang, M. Arca Sedda, Direct N-body simulation of the Galactic centre. Mon. Not. R. Astron. Soc. 484
2019
Later among the works it cites.
A. Torres-Orjuela, X. Chen, Z. Cao, P. Amaro-Seoane, P. Peng, Detecting the beaming effect of gravitational waves. Ph. Rv. D 100
2019
Later among the works it cites.
L. Zwick, P.R. Capelo, E. Bortolas, L. Mayer, P. Amaro-Seoane, Improved gravitational radiation time-scales: significance for LISA and LIGO-Virgo sources. arXiv e-prints, 1911–06024 (2019)
2019
Later among the works it cites.
M. Arca-Sedda, P. Amaro-Seoane, X. Chen, Detecting intermediate-mass black holes in Milky Way globular clusters and the Local Volume with LISA and other gravitational wave detectors. arXiv e-prints, 2007–13746 (2020)
2020
Closest in time.
E. Barausse, E. Berti, T. Hertog, S.A. Hughes, P. Jetzer, P. Pani, T.P. Sotiriou, N. Tamanini, H. Witek, K. Yagi, N. Yunes, T. Abdelsalhin, A. Achucarro, K. van Aelst, N. Afshordi, S. Akcay, L. Annulli, K.G. Arun, I. Ayuso, V. Baibhav, T. Baker, H. Bantilan, T. Barreiro, C. Barrera-Hinojosa, N. Bartolo, D. Baumann, E. Belgacem, E. Bellini, N. Bellomo, I. Ben-Dayan, I. Bena, R. Benkel, E. Bergshoefs, L. Bernard, S. Bernuzzi, D. Bertacca, M. Besancon, F. Beutler, F. Beyer, S. Bhagwat, J. Bicak, S. Biondini, S. Bize, D. Blas, C. Boehmer, K. Boller, B. Bonga, C. Bonvin, P. Bosso, G. Bozzola, P. Brax, M. Breitbach, R. Brito, M. Bruni, B. Brügmann, H. Bulten, A. Buonanno, L.M. Burko, C. Burrage, F. Cabral, G. Calcagni, C. Caprini, A. Cárdenas-Avendaño, M. Celoria, K. Chatziioannou, D. Chernoff, K. Clough, A. Coates, D. Comelli, G. Compère, D. Croon, D. Cruces, G. Cusin, C. Dalang, U. Danielsson, S. Das, S. Datta, J. de Boer, V. De Luca, C. De Rham, V. Desjacques, K. Destounis, F. Di Filippo, A. Dima, E. Dimastrogiovanni, S. Dolan, D. Doneva, F. Duque, R. Durrer, W. East, R. Easther, M. Elley, J.R. Ellis, R. Emparan, J.M. Ezquiaga, M. Fairbairn, S. Fairhurst, H.F. Farmer, M.R. Fasiello, V. Ferrari, P.G. Ferreira, G. Ficarra, P. Figueras, S. Fisenko, S. Foffa, N. Franchini, G. Franciolini, K. Fransen, J. Frauendiener, N. Frusciante, R. Fujita, J. Gair, A. Ganz, P. Garcia, J. Garcia-Bellido, J. Garriga, R. Geiger, C. Geng, L.Á. Gergely, C. Germani, D. Gerosa, S.B. Giddings, E. Gourgoulhon, P. Grand clement, L. Graziani, L. Gualtieri, D. Haggard, S. Haino, R. Halburd, W.-B. Han, A.J. Hawken, A. Hees, I.S. Heng, J. Hennig, C. Herdeiro, S. Hervik, J.v. Holten, C.J.D. Hoyle, Y. Hu, M. Hull, T. Ikeda, M. Isi, A. Jenkins, F. Julié, E. Kajfasz, C. Kalaghatgi, N. Kaloper, M. Kamionkowski, V. Karas, S. Kastha, Z. Keresztes, L. Kidder, T. Kimpson, A. Klein, S. Klioner, K. Kokkotas, H. Kolesova, S. Kolkowitz, J. Kopp, K. Koyama, N.V. Krishnendu, J.A.V. Kroon, M. Kunz, O. Lahav, A. Landragin, R.N. Lang, C. Le Poncin-Lafitte, J. Lemos, B. Li, S. Liberati, M. Liguori, F. Lin, G. Liu, F.S.N. Lobo, R. Loll, L. Lombriser, G. Lovelace, R.P. Macedo, E. Madge, E. Maggio, M. Maggiore, S. Marassi, P. Marcoccia, C. Markakis, W. Martens, K. Martinovic, C.J.A.P. Martins, A. Maselli, S. Mastrogiovanni, S. Matarrese, A. Matas, N.E. Mavromatos, A. Mazumdar, P.D. Meerburg, E. Megias, J. Miller, J.P. Mimoso, L. Mittnacht, M.M. Montero, B. Moore, P. Martin-Moruno, I. Musco, H. Nakano, S. Nampalliwar, G. Nardini, A. Nielsen, J. Novák, N.J. Nunes, M. Okounkova, R. Oliveri, F. Oppizzi, G. Orlando, N. Oshita, G. Pappas, V. Paschalidis, H. Peiris, M. Peloso, S. Perkins, V. Pettorino, I. Pikovski, L. Pilo, J. Podolsky, A. Pontzen, S. Prabhat, G. Pratten, T. Prokopec, M. Prouza, H. Qi, A. Raccanelli, A. Rajantie, L. Randall, G. Raposo, V. Raymond, S. Renaux-Petel, A. Ricciardone, A. Riotto, T. Robson, D. Roest, R. Rollo, S. Rosofsky, J.J. Ruan, D. Rubiera-García, M. Ruiz, M. Rusu, F. Sabatie, N. Sago, M. Sakellariadou, I.D. Saltas, L. Sberna, B. Sathyaprakash, M. Scheel, P. Schmidt, B. Schutz, P. Schwaller, L. Shao, S.L. Shapiro, D. Shoemaker, A.d. Silva, C. Simpson, C.F. Sopuerta, A. Spallicci, B.A. Stefanek, L. Stein, N. Stergioulas, M. Stott, P. Sutton, R. Svarc, H. Tagoshi, T. Tahamtan, H. Takeda, T. Tanaka, G. Tantilian, G. Tasinato, O. Tattersall, S. Teukolsky, A.L. Tiec, G. Theureau, M. Trodden, A. Tolley, A. Toubiana, D. Traykova, A. Tsokaros, C. Unal, C.S. Unnikrishnan, E.C. Vagenas, P. Valageas, M. Vallisneri, J. Van den Brand, C. Van den Broeck, M. van de Meent, P. Vanhove, V. Varma, J. Veitch, B. Vercnocke, L. Verde, D. Vernieri, F. Vernizzi, R. Vicente, F. Vidotto, M. Visser, Z. Vlah, S. Vretinaris, S. Völkel, Q. Wang, Y.-T. Wang, M.C. Werner, J. Westernacher, R.v.d. Weygaert, D. Wiltshire, T. Wiseman, P. Wolf, K. Wu, K. Yamada, H. Yang, L. Yi, X. Yue, D. Yvon, M. Zilhão, A. Zimmerman, M. Zumalacarregui, Prospects for fundamental physics with LISA. General Relativity and Gravitation 52
2020
Closest in time.
B. Carr, F. Kühnel, Primordial Black Holes as Dark Matter: Recent Developments. Annual Review of Nuclear and Particle Science 70
2020
Closest in time.
B. Carr, K. Kohri, Y. Sendouda, J. Yokoyama, Constraints on Primordial Black Holes. arXiv e-prints, 2002–12778 (2020)
2020
Closest in time.
A.J.K. Chua, M.L. Katz, N. Warburton, S.A. Hughes, Rapid generation of fully relativistic extreme-mass-ratio-inspiral waveform templates for LISA data analysis. arXiv e-prints, 2008–06071 (2020)
2020
Closest in time.
S. Datta, A. Gupta, S. Kastha, K.G. Arun, B.S. Sathyaprakash, Tests of general relativity using multiband observations of intermediate mass binary black hole mergers. arXiv e-prints, 2006–12137 (2020)
2020
Closest in time.
Gravity Collaboration, R. Abuter, A. Amorim, M. Bauböck, J.P. Berger, H. Bonnet, W. Brand ner, V. Cardoso, Y. Clénet, P.T. de Zeeuw, J. Dexter, A. Eckart, F. Eisenhauer, N.M. Förster Schreiber, P. Garcia, F. Gao, E. Gendron, R. Genzel, S. Gillessen, M. Habibi, X. Haubois, T. Henning, S. Hippler, M. Horrobin, A. Jiménez-Rosales, L. Jochum, L. Jocou, A. Kaufer, P. Kervella, S. Lacour, V. Lapeyrère, J.-B. Le Bouquin, P. Léna, M. Nowak, T. Ott, T. Paumard, K. Perraut, G. Perrin, O. Pfuhl, G. Rodríguez-Coira, J. Shangguan, S. Scheithauer, J. Stadler, O. Straub, C. Straubmeier, E. Sturm, L.J. Tacconi, F. Vincent, S. von Fellenberg, I. Waisberg, F. Widmann, E. Wieprecht, E. Wiezorrek, J. Woillez, S. Yazici, G. Zins, Detection of the Schwarzschild precession in the orbit of the star S2 near the Galactic centre massive black hole. Astron. Astrophys. 636
2020
Closest in time.
K. Maguire, M. Eracleous, P.G. Jonker, M. MacLeod, S. Rosswog, Tidal Disruptions of White Dwarfs: Theoretical Models and Observational Prospects. Space Sci. Rev. 216
2020
Closest in time.
F. Peißker, A. Eckart, M. Zajaček, B. Ali, M. Parsa, S62 and S4711: Indications of a Population of Faint Fast-moving Stars inside the S2 Orbit—S4711 on a 7.6 yr Orbit around Sgr A*. Astrophys. J. 899
2020
Closest in time.
E.M. Rossi, N.C. Stone, J.A.P. Law-Smith, M. MacLeod, G. Lodato, J.L. Dai, I. Mand el, The Process of Stellar Tidal Disruption by Supermassive Black Holes. The first pericenter passage. arXiv e-prints, 2005–12528 (2020)
2020
Closest in time.
N.C. Stone, E. Vasiliev, M. Kesden, E.M. Rossi, H.B. Perets, P. Amaro-Seoane, Rates of Stellar Tidal Disruption. Space Science Reviews 216
2020
Closest in time.
A. Torres-Orjuela, X. Chen, P. Amaro-Seoane, Phase shift of gravitational waves induced by aberration. Ph. Rv. D 101
2020
Closest in time.
B. Bar-Or, J.-B. Fouvry, Scalar Resonant Relaxation of Stars around a Massive Black Hole. Astrophys. J. Lett. 860
2041
Closest in time.
X. Chen, P. Amaro-Seoane, Revealing the Formation of Stellar-mass Black Hole Binaries: The Need for Deci-Hertz Gravitational-wave Observatories. ApJ Lett. 842
2041
Closest in time.
LIGO Scientific Collaboration, Virgo Collaboration, Properties and Astrophysical Implications of the 150 M ⊙
2041
Closest in time.
M. Preto, P. Amaro-Seoane, On Strong Mass Segregation Around a Massive Black Hole: Implications for Lower-Frequency Gravitational-Wave Astrophysics. ApJ Lett. 708
2041
Closest in time.
C. Wegg, O. Gerhard, M. Portail, The Initial Mass Function of the Inner Galaxy Measured from OGLE-III Microlensing Timescales. ApJ Lett. 843
2041
Closest in time.
A. Królak, K.D. Kokkotas, G. Schäfer, Estimation of the post-Newtonian parameters in the gravitational-wave emission of a coalescing binary. Phys. Rev. D 52
2089
Closest in time.