First Sagittarius A* Event Horizon Telescope results. V. Testing astrophysical models of the galactic center black hole
Files
Published version
Date
2022-05-01
Authors
Event Horizon Telescope Collaboration
Akiyama, Kazunori
Alberdi, Antxon
Alef, Walter
Carlos Algaba, Juan
Anantua, Richard
Asada, Keiichi
Azulay, Rebecca
Bach, Uwe
Baczko, Anne-Kathrin
Version
OA Version
Published version
Citation
Event Horizon Telescope Collaboration, K. Akiyama, A. Alberdi, W. Alef, J. Carlos Algaba, R. Anantua, K. Asada, R. Azulay, U. Bach, A.-K. Baczko, D. Ball, M. Baloković, J. Barrett, M. Bauböck, B.A. Benson, D. Bintley, L. Blackburn, R. Blundell, K.L. Bouman, G.C. Bower, H. Boyce, M. Bremer, C.D. Brinkerink, R. Brissenden, S. Britzen, A.E. Broderick, D. Broguiere, T. Bronzwaer, S. Bustamante, D.-Y. Byun, J.E. Carlstrom, C. Ceccobello, A. Chael, C.-K. Chan, K. Chatterjee, S. Chatterjee, M.-T. Chen, Y. Chen, X. Cheng, I. Cho, P. Christian, N.S. Conroy, J.E. Conway, J.M. Cordes, T.M. Crawford, G.B. Crew, A. Cruz-Osorio, Y. Cui, J. Davelaar, M. De Laurentis, R. Deane, J. Dempsey, G. Desvignes, J. Dexter, V. Dhruv, S.S. Doeleman, S. Dougal, S.A. Dzib, R.P. Eatough, R. Emami, H. Falcke, J. Farah, V.L. Fish, E. Fomalont, H.A. Ford, R. Fraga-Encinas, W.T. Freeman, P. Friberg, C.M. Fromm, A. Fuentes, P. Galison, C.F. Gammie, R. García, O. Gentaz, B. Georgiev, C. Goddi, R. Gold, A.I. Gómez-Ruiz, J.L. Gómez, M. Gu, M. Gurwell, K. Hada, D. Haggard, K. Haworth, M.H. Hecht, R. Hesper, D. Heumann, L.C. Ho, P. Ho, M. Honma, C.-W.L. Huang, L. Huang, D.H. Hughes, S. Ikeda, C.M. Violette Impellizzeri, M. Inoue, S. Issaoun, D.J. James, B.T. Jannuzi, M. Janssen, B. Jeter, W. Jiang, A. Jiménez-Rosales, M.D. Johnson, S. Jorstad, A.V. Joshi, T. Jung, M. Karami, R. Karuppusamy, T. Kawashima, G.K. Keating, M. Kettenis, D.-J. Kim, J.-Y. Kim, J. Kim, J. Kim, M. Kino, J.Y. Koay, P. Kocherlakota, Y. Kofuji, P.M. Koch, S. Koyama, C. Kramer, M. Kramer, T.P. Krichbaum, C.-Y. Kuo, N.L. Bella, T.R. Lauer, D. Lee, S.-S. Lee, P.K. Leung, A. Levis, Z. Li, R. Lico, G. Lindahl, M. Lindqvist, M. Lisakov, J. Liu, K. Liu, E. Liuzzo, W.-P. Lo, A.P. Lobanov, L. Loinard, C.J. Lonsdale, R.-S. Lu, J. Mao, N. Marchili, S. Markoff, D.P. Marrone, A.P. Marscher, I. Martí-Vidal, S. Matsushita, L.D. Matthews, L. Medeiros, K.M. Menten, D. Michalik, I. Mizuno, Y. Mizuno, J.M. Moran, K. Moriyama, M. Moscibrodzka, C. Müller, A. Mus, G. Musoke, I. Myserlis, A. Nadolski, H. Nagai, N.M. Nagar, M. Nakamura, R. Narayan, G. Narayanan, I. Natarajan, A. Nathanail, S. Navarro Fuentes, J. Neilsen, R. Neri, C. Ni, A. Noutsos, M.A. Nowak, J. Oh, H. Okino, H. Olivares, G.N. Ortiz-León, T. Oyama, F. Özel, D.C.M. Palumbo, G. Filippos Paraschos, J. Park, H. Parsons, N. Patel, U.-L. Pen, D.W. Pesce, V. Piétu, R. Plambeck, A. PopStefanija, O. Porth, F.M. Pötzl, B. Prather, J.A. Preciado-López, D. Psaltis, H.-Y. Pu, V. Ramakrishnan, R. Rao, M.G. Rawlings, A.W. Raymond, L. Rezzolla, A. Ricarte, B. Ripperda, F. Roelofs, A. Rogers, E. Ros, C. Romero-Cañizales, A. Roshanineshat, H. Rottmann, A.L. Roy, I. Ruiz, C. Ruszczyk, K.L.J. Rygl, S. Sánchez, D. Sánchez-Argüelles, M. Sánchez-Portal, M. Sasada, K. Satapathy, T. Savolainen, F.P. Schloerb, J. Schonfeld, K.-F. Schuster, L. Shao, Z. Shen, D. Small, B.W. Sohn, J. SooHoo, K. Souccar, H. Sun, F. Tazaki, A.J. Tetarenko, P. Tiede, R.P.J. Tilanus, M. Titus, P. Torne, E. Traianou, T. Trent, S. Trippe, M. Turk, I. van Bemmel, H.J. van Langevelde, D.R. van Rossum, J. Vos, J. Wagner, D. Ward-Thompson, J. Wardle, J. Weintroub, N. Wex, R. Wharton, M. Wielgus, K. Wiik, G. Witzel, M.F. Wondrak, G.N. Wong, Q. Wu, P. Yamaguchi, D. Yoon, A. Young, K. Young, Z. Younsi, F. Yuan, Y.-F. Yuan, J.A. Zensus, S. Zhang, G.-Y. Zhao, S.-S. Zhao, T.L. Chan, R. Qiu, S. Ressler, C. White. 2022. "First Sagittarius A* Event Horizon Telescope Results. V. Testing Astrophysical Models of the Galactic Center Black Hole" Letters of the Astrophysical Journal, Volume 930, Issue 2, pp.L16-L16. https://doi.org/10.3847/2041-8213/ac6672
Abstract
In this paper we provide a first physical interpretation for the Event Horizon Telescope's (EHT) 2017 observations of Sgr A*. Our main approach is to compare resolved EHT data at 230 GHz and unresolved non-EHT observations from radio to X-ray wavelengths to predictions from a library of models based on time-dependent general relativistic magnetohydrodynamics simulations, including aligned, tilted, and stellar-wind-fed simulations; radiative transfer is performed assuming both thermal and nonthermal electron distribution functions. We test the models against 11 constraints drawn from EHT 230 GHz data and observations at 86 GHz, 2.2 μm, and in the X-ray. All models fail at least one constraint. Light-curve variability provides a particularly severe constraint, failing nearly all strongly magnetized (magnetically arrested disk (MAD)) models and a large fraction of weakly magnetized models. A number of models fail only the variability constraints. We identify a promising cluster of these models, which are MAD and have inclination i ≤ 30°. They have accretion rate (5.2–9.5) × 10−9
M
⊙ yr−1, bolometric luminosity (6.8–9.2) × 1035 erg s−1, and outflow power (1.3–4.8) × 1038 erg s−1. We also find that all models with i ≥ 70° fail at least two constraints, as do all models with equal ion and electron temperature; exploratory, nonthermal model sets tend to have higher 2.2 μm flux density; and the population of cold electrons is limited by X-ray constraints due to the risk of bremsstrahlung overproduction. Finally, we discuss physical and numerical limitations of the models, highlighting the possible importance of kinetic effects and duration of the simulations.
Description
License
© 2022. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.