大质量功率-麦克斯韦理论中的三维 AdS 黑洞

IF 2.1 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS General Relativity and Gravitation Pub Date : 2024-04-12 DOI:10.1007/s10714-024-03229-5
B. Eslam Panah, K. Jafarzade, Á. Rincón
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引用次数: 0

摘要

最近的研究表明,功率-麦克斯韦(PM)理论可以消除电场的奇异性(B. Eslam Panah,Europhys.Lett.134, 20005 (2021)).出于对三维黑洞的浓厚兴趣,以及从宇宙学和天体物理学角度研究大质量引力所取得的巨大成功,我们研究了存在 PM 电动力学的 de Rham、Gabadadze 和 Tolley 大质量引力理论中的三维黑洞解。首先,我们提取了该引力理论中的精确三维解。然后,我们研究这些解的几何特性。通过计算守恒量和热力学量,我们检验了热力学第一定律对这些黑洞的有效性。我们还考察了这些黑洞在经典集合中的稳定性。我们继续计算这类黑洞的光学特征,如光子轨道半径、能量发射率和偏转角。考虑到这些光学量,我们最后分析了模型参数对它们的有效作用。
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Three-dimensional AdS black holes in massive-power-Maxwell theory

Recently, it was shown that the power-Maxwell (PM) theory could remove the singularity of the electric field (B. Eslam Panah, Europhys. Lett. 134, 20005 (2021)). Motivated by a great interest in three-dimensional black holes and a surge of success in studying massive gravity from both the cosmological and astrophysical points of view, we investigate three-dimensional black hole solutions in de Rham, Gabadadze, and Tolley massive theory of gravity in the presence of PM electrodynamics. First, we extract exact three-dimensional solutions in this theory of gravity. Then we study the geometrical properties of these solutions. Calculating conserved and thermodynamic quantities, we check the validity of the first law of thermodynamics for these black holes. We also examine the stability of these black holes in the context of the canonical ensemble. We continue calculating this kind of black hole’s optical features, such as the photon orbit radius, the energy emission rate, and the deflection angle. Considering these optical quantities, finally, we analyze the effective role of the parameters of models on them.

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来源期刊
General Relativity and Gravitation
General Relativity and Gravitation 物理-天文与天体物理
CiteScore
4.60
自引率
3.60%
发文量
136
审稿时长
3 months
期刊介绍: General Relativity and Gravitation is a journal devoted to all aspects of modern gravitational science, and published under the auspices of the International Society on General Relativity and Gravitation. It welcomes in particular original articles on the following topics of current research: Analytical general relativity, including its interface with geometrical analysis Numerical relativity Theoretical and observational cosmology Relativistic astrophysics Gravitational waves: data analysis, astrophysical sources and detector science Extensions of general relativity Supergravity Gravitational aspects of string theory and its extensions Quantum gravity: canonical approaches, in particular loop quantum gravity, and path integral approaches, in particular spin foams, Regge calculus and dynamical triangulations Quantum field theory in curved spacetime Non-commutative geometry and gravitation Experimental gravity, in particular tests of general relativity The journal publishes articles on all theoretical and experimental aspects of modern general relativity and gravitation, as well as book reviews and historical articles of special interest.
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