Horizon replicas in black hole shadows

IF 2.5 3区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS Nuclear Physics B Pub Date : 2024-10-09 DOI:10.1016/j.nuclphysb.2024.116700
D. Pugliese , H. Quevedo
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Abstract

Recently, new exploratory channels have opened up for the physics of highly compact objects, such as gravitational waves and black hole shadows. Moreover, more precise analysis and observations are now possible in the physics of accretion around compact objects. These advancements provide in particular an unprecedented insight into the physics near the horizons of a black hole. In this work we focus on the shadow boundary of a Kerr black hole, introducing observables related to special null orbits, called horizons replicas, solutions of the shadow edge equations which are related to particular photon orbits, defined by constraints on their impact parameter, carrying information about the angular momentum of the central spinning object. These orbits are related to particular regions on the shadow boundary and might be used to determine the spin of the black hole. The results provide the conditions by which horizon replicas are imprinted in the black hole shadow profile, in dependence on the black hole dimensionless spin and observational angle, providing eventually new templates for the future observations.
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黑洞阴影中的地平线复制品
最近,在高紧凑天体物理学方面开辟了新的探索渠道,如引力波和黑洞阴影。此外,现在还可以对紧凑天体周围的吸积物理学进行更精确的分析和观测。这些进步尤其让我们对黑洞视界附近的物理学有了前所未有的深入了解。在这项工作中,我们重点研究了克尔黑洞的阴影边界,引入了与特殊空轨道相关的观测数据,这些轨道被称为 "地平线复制品",是阴影边缘方程的解,与特定的光子轨道相关,这些光子轨道由其撞击参数约束所定义,携带着中心旋转天体的角动量信息。这些轨道与阴影边界上的特定区域相关,可用于确定黑洞的自旋。研究结果提供了地平线复制品在黑洞阴影轮廓中留下印记的条件,这些条件取决于黑洞的无量纲自旋和观测角度,最终为未来的观测提供了新的模板。
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来源期刊
Nuclear Physics B
Nuclear Physics B 物理-物理:粒子与场物理
CiteScore
5.50
自引率
7.10%
发文量
302
审稿时长
1 months
期刊介绍: Nuclear Physics B focuses on the domain of high energy physics, quantum field theory, statistical systems, and mathematical physics, and includes four main sections: high energy physics - phenomenology, high energy physics - theory, high energy physics - experiment, and quantum field theory, statistical systems, and mathematical physics. The emphasis is on original research papers (Frontiers Articles or Full Length Articles), but Review Articles are also welcome.
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