Exploring the effects of generalized entropy onto Bardeen black hole surrounded by cloud of strings

IF 2.5 3区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS
Hamza Tariq , Usman Zafar , Shahid Chaudhary , Kazuharu Bamba , Abdul Jawad , Sanjar Shaymatov
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引用次数: 0

Abstract

This work explores the thermodynamic characteristics and geothermodynamics of a Bardeen black hole (BH) that interacts with a string cloud and is minimally connected to nonlinear electrodynamics. To avoid the singularities throughout the cosmic evolution, we consider an entropy function which comprises five parameters. In addition, by employing this entropy function for the specific range of parameters, we obtain the representations of BH entropy based on the holographic principle. Moreover, we employ this entropy function to investigate its impact on the thermodynamics of the BH by studying various thermodynamic properties like mass, temperature, heat capacity, and Gibbs free energy for numerous scalar charge and string cloud values. To support our investigation, we use various geothermodynamics formalisms to evaluate the stable behavior and identify different physical scenarios. Furthermore, in this analysis, we observe that only one entropy formalism provides us with better results regarding the thermodynamic behavior of the BH. Moreover, it is shown that one of the entropy models provides a thermodynamic geometric behavior compared to the other entropy models.
探索广义熵对弦云包围下的巴丁黑洞的影响
这项研究探讨了与弦云相互作用并与非线性电动力学有最小关联的巴丁黑洞(BH)的热力学特征和地热力学。为了避免在整个宇宙演化过程中出现奇点,我们考虑了一个由五个参数组成的熵函数。此外,通过在特定参数范围内使用该熵函数,我们得到了基于全息原理的 BH 熵的表示。此外,我们还利用这个熵函数来研究它对 BH 热力学的影响,研究了许多标量电荷和弦云值的各种热力学性质,如质量、温度、热容量和吉布斯自由能。为了支持我们的研究,我们使用各种地球热力学形式来评估稳定行为,并确定不同的物理情景。此外,在这项分析中,我们发现只有一种熵形式主义能为我们提供有关玻色体热力学行为的更好结果。此外,研究还表明,与其他熵模型相比,其中一个熵模型提供了一种热力学几何行为。
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
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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