Estimation of the spin of a supermassive black hole in Sagittarius A*

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Resumo

In April 2017, the Event Horizon telescope received an image of a supermassive black hole in the Sagittarius A* source. This image consists of a ring-like structure that contains three areas with increased brightness (spots). If we assume that these spots are associated with flares near the event horizon of a black hole, then we can estimate its spin. Our estimate gives a value of the order of a ≈ 0.9.

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Sobre autores

A. Andrianov

Lebedev Physical Institute

Autor responsável pela correspondência
Email: andrian@asc.rssi.ru

Astro Space Center 

Rússia, Moscow

S. Chernov

Lebedev Physical Institute

Email: chernov@td.lpi.ru

Astro Space Center

Rússia, Moscow

Bibliografia

  1. K. Akiyama, A. Alberdi, W. Alef, J.C. Algaba, et al., Astrophys. J. Letters 930(2), id. L12 (2022).
  2. С.В. Чернов, Астрон. журн. 98(2), 132 (2021).
  3. R. Fraga-Encinas, M. Moscibrodzka, and H. Falcke, arXiv:2312.12951 [astro-ph.HE] (2023).
  4. M. Subroweit, M. Garcia-Marin, A. Eckart, A. Borkar, M. Valencia-S., G. Witzel, B. Shahzamanian, and C. Straubmeier, Astron. and Astrophys. 601, id. A80 (2017).
  5. M. Garcia-Marin, A. Eckart, A. Weiss, G. Witzel, et al. 738(2), id. 158 (2011).
  6. G. Trap, A. Goldwurm, K. Dodds-Eden, A. Weiss, et al., Astron. and Astrophys. 528, id. A140 (2011).
  7. D.P. Marrone, F.K. Baganoff, M.R. Morris, J.M. Moran, et al., 682(1), 373 (2008).
  8. V.L. Fish, S. S. Doeleman, C. Beaudoin, R. Blundell, et al., Astrophys. J. Letters 727(2), id. L36 (2011).
  9. A.M. Ghez, S.A. Wright, K. Matthews, D. Thompson, et al., 601(2), L159 (2004).
  10. M. Wielgus, N. Marchili, I. Marti-Vidal, G.K. Keating, et al., Astrophys. J. Letters 930(2), id. L19 (2022).
  11. A. Andrianov, S. Chernov, I. Girin, S. Likhachev, A. Lyakhovets, and Yu. Shchekinov, Phys. Rev. D 105(6), id. 063015 (2022).
  12. Y. Kato, M. Miyoshi, R. Takahashi, H. Negoro, and R. Matsumoto, Monthly Not. Roy. Astron. Soc. 403, L74 (2010).
  13. V.I. Dokuchaev, General Relativ. and Gravit. 46, 1832 (2014).
  14. M.D. Johnson, A. Lupsasca, A. Strominger, G.N. Wong, et al., Science Advances 6(12), eaaz1310 (2020).
  15. B.P. Abbott, R. Abbott, T.D. Abbott, M.R. Abernathy, et al., Phys. Rev. Letters 116(6), id. 061102 (2016).
  16. K. Akiyama, A. Alberdi, W. Alef, K. Asada, et al., Astrophys. J. Letters 875(1), id. L1 (2019).

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2. Fig. 1. Flash in the accretion disc of the SMBH and its reflection in the first three photon rings

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3. Fig. 2. The reconstructed VLBI image of a prolonged flare in the accretion disc and its reflection in the first two photon rings, taking into account the constraints of the ngEHT VLBI network

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4. Fig. 3. Image of the SMBH in Sagittarius A* observed by TGS [1]. Straight lines connect the positions of flares in the disc in both the first and second photon rings, forming an angle that depends only on the spin of the black hole

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5. Fig. 4. Dependence of the angle between the positions of flares in the disc and in photon rings on the spin of the black hole. The blue line shows the theoretical dependence. The red line shows the dependence calculated taking into account the error in determining the positions of the bright spots in the VLBI images. The error is determined by the limited filling of the spatial frequency region in real VLBI observations

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