被完美流体包围的戴奥尼克黑洞溶液的热力学一阶量子修正研究

IF 2.5 3区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS
Riasat Ali , Xia Tiecheng , Rimsha Babar
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引用次数: 0

摘要

在这项工作中,我们回顾了具有完美流体的戴奥尼克全局单极的度量。为了计算被完美流体包围的戴奥尼克黑洞的标准温度,我们分析了在黑洞周围场和电荷-磁荷作用下有关视界的霍金温度的图形解释。为此,我们采用了半经典方法、温泽尔-克拉默-布里渊(WKB)近似和广义不确定性原理(GUP)中量子引力存在时的拉格朗日方程。我们利用基于汉密尔顿-雅各比技术的玻色隧道策略计算了戴奥尼克黑洞的改进温度。我们观察到,在黑洞溶液和引力参数的作用下,Dyonic 黑洞的物理状态被完美流体所包围。此外,我们还考察了改进后的熵,以研究量子引力和黑洞几何对熵的影响。我们探索了基于黑洞视界结构的熵的图形行为,并分析了完美流体参数、电荷、磁荷和量子引力对熵的影响。最后,我们通过图形结果研究了黑洞的不稳定和稳定条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of first-order quantum corrections of thermodynamics to a Dyonic black hole solution surrounded by a perfect fluid
In this work, we review the metric for a dyonic global monopole with a perfect fluid. To calculate the standard temperature of a Dyonic black hole surrounded by a perfect fluid, we analyze the graphical interpretation of the Hawking temperature concerning the horizon under the effects of the black hole's surrounding field and electric-magnetic charges. For this purpose, we follow the semi-classical method, the Wentzel-Kramers-Brillouin (WKB) approximation, and the Lagrangian equation in the presence of quantum gravity as seen in the generalized uncertainty principle (GUP). We calculate the improved temperature of a Dyonic black hole using a bosonic tunneling strategy based on the Hamilton-Jacobi technique. We observe that the physical state of the Dyonic black hole is surrounded by a perfect fluid under the effects of the black hole solution and the gravity parameter. Further, we examine the improved entropy to study the influences of quantum gravity and black hole geometry on entropy. We explore the graphical behavior of entropy based on the black hole's horizon structure and analyze the influence of perfect fluid parameters, electric charge, magnetic charge, and quantum gravity on entropy. Finally, we investigate the unstable and stable conditions of a black hole via graphical results.
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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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