Shadow of Kerr black hole surrounded by a cloud of strings in Rastall gravity and constraints from M87*

IF 5 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Qi Sun, Yu Zhang, Chen-Hao Xie, Qi-Quan Li
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引用次数: 0

Abstract

Motivated by the first image of a black hole captured by the Event Horizon Telescope (EHT), there has been a surge of research using observations of black hole shadows to test theories of gravity. In this paper, we carry out a study related to the shadow of Kerr black holes surrounded by a cloud of strings in Rastall gravity, which deviates from the Kerr black hole due to the presence of the string parameter a0 and the parameter β. The horizons, ergospheres, and photon region of the black hole are shown. Moreover, we explore the shadow and observations of the black hole, which are closely linked to the parameters a0 and β. By treating M87* as a Kerr black hole surrounded by a cloud of strings under Rastall gravity, we constrain the black hole parameters using the EHT observations. For a given β, the circularity deviation of the black hole obeys ΔC0.1 in all regions. The angular diameter θd=42±3μas provides the upper bound of parameters a and a0 for fixed β. The shadow axis ratio satisfies the observation data of EHT (1<Dx4/3) in the whole space for a given β. These results are consistent with the public information from EHT. In other words, candidates for real astrophysical black holes can be Kerr black holes surrounded by a cloud of strings in Rastall gravity.

在拉斯塔尔引力和来自 M87* 的约束条件下被弦云包围的克尔黑洞的阴影
受事件地平线望远镜(EHT)捕捉到的第一幅黑洞图像的推动,利用黑洞阴影观测来检验引力理论的研究激增。在本文中,我们对拉斯托尔引力中被弦云包围的克尔黑洞的阴影进行了研究,由于弦参数和 。图中显示了黑洞的视界、极球和光子区域。此外,我们还探讨了黑洞的阴影和观测结果,它们与弦参数和 。我们把 M87* 看作一个在拉斯托尔引力作用下被弦云包围的克尔黑洞,利用 EHT 观测结果来约束黑洞参数。对于给定的 ,黑洞的圆度偏差在所有区域都服从。角直径提供了参数的上界,而对于固定的 、 、 和 ,角直径则提供了参数的下界。对于给定的 ,影轴比在整个空间满足 EHT()的观测数据。这些结果与 EHT 的公开信息一致。换句话说,真实天体物理黑洞的候选者可以是在拉斯托尔引力下被弦云包围的克尔黑洞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Physics of the Dark Universe
Physics of the Dark Universe ASTRONOMY & ASTROPHYSICS-
CiteScore
9.60
自引率
7.30%
发文量
118
审稿时长
61 days
期刊介绍: Physics of the Dark Universe is an innovative online-only journal that offers rapid publication of peer-reviewed, original research articles considered of high scientific impact. The journal is focused on the understanding of Dark Matter, Dark Energy, Early Universe, gravitational waves and neutrinos, covering all theoretical, experimental and phenomenological aspects.
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