Joule Thomson expansion, Maxwell equal area law and topological interpretation of Phantom RN AdS black holes

IF 1.9 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
M. Umair Shahzad , Aqsa Mehmood , Ramish Gohar , Ali Övgün
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引用次数: 0

Abstract

This paper is devoted to study the thermodynamic topological defects, Joule–Thomson (JT) and Maxwell’s equal area law of Phantom RN AdS black holes (BHs). The inversion temperatures and inversion curves are obtained and by using the isenthalpic curves in the temperature–pressure (TP) plane to locate the cooling and heating regions. Using Maxwell’s equal-area law, we select different independent conjugate variables to study the phase transitions of Phantom RN AdS BHs. We find that phase transition rely on the electric potential and horizon radius of the BH when its charge is constant. Phase transition of Phantom RN AdS BH are proportional to the ratio of event horizon to its cosmological constant, where the latter is assumed to be constant. Moreover, we consider the Phantom RN AdS BH as defects with a topological nature within thermodynamic domain and examine the local and global topology by computing the winding numbers at the defects, which concludes that the overall topological charge is either equal to 0 or 1.

焦耳汤姆森膨胀、麦克斯韦等面积定律和 Phantom RN AdS 黑洞的拓扑解释
本文致力于研究幻象RN AdS黑洞(BHs)的热力学拓扑缺陷、焦耳-汤姆森()和麦克斯韦等面积定律。通过在温度-压力()平面上的等延线,得到了反转温度和反转曲线,从而确定了冷却区和加热区的位置。利用麦克斯韦等面积定律,我们选择不同的独立共轭变量来研究 Phantom RN AdS BHs 的相变。我们发现,当 BH 的电荷恒定时,相变依赖于 BH 的电势和水平半径。幻影 RN AdS BH 的相变与事件视界和宇宙常数的比值成正比,其中后者假定为常数。此外,我们把 Phantom RN AdS BH 视为热力学域内具有拓扑性质的缺陷,并通过计算缺陷处的缠绕数来检验局部和全局拓扑,从而得出整体拓扑电荷等于 0 或 1 的结论。
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
New Astronomy
New Astronomy 地学天文-天文与天体物理
CiteScore
4.00
自引率
10.00%
发文量
109
审稿时长
13.6 weeks
期刊介绍: New Astronomy publishes articles in all fields of astronomy and astrophysics, with a particular focus on computational astronomy: mathematical and astronomy techniques and methodology, simulations, modelling and numerical results and computational techniques in instrumentation. New Astronomy includes full length research articles and review articles. The journal covers solar, stellar, galactic and extragalactic astronomy and astrophysics. It reports on original research in all wavelength bands, ranging from radio to gamma-ray.
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