摘要
By considering the concept of a unified single fluid model,referred to as modified Chaplygin gas(MCG),which amalgamates dark energy and dark matter,we explore the thermodynamic characteristics of charged anti-de Sitter(AdS)black holes existing in an unconventional fluid accompanied by MCG.To accomplish this objective,we derive the equations of state by regarding the charge Q^(2) as a thermodynamic variable.The effects of MCG parameters on the critical thermodynamic quantities(ψ_(c),T_(c),Q_(c)^(2))are examined,followed by a detailed analysis of the Q^(2)-ψ diagram.To provide a clearer explanation of the phase transition,we present an analysis of the Gibbs free energy.It is important to note that if the Hawking temperature exceeds the critical temperature,a distinct pattern is observed known as swallowtail behavior.This indicates that the system undergoes a first-order phase transition from a smaller black hole to a larger one.The critical exponent of the system is found to be in complete agreement with that of the van der Waals fluid system.Furthermore,we investigate the impact of MCG parameters and black hole charge on Joule-Thomson(J-T)expansion in the extended phase space.The J-T coefficient is examined to pinpoint the exact region experiencing cooling or heating,and the observation reveals that the presence of negative heat capacity results in the occurrence of a cooling process.The impact of MCG on the inversion curve of charged black holes exhibits a striking resemblance to that observed in most multi-dimensional black hole systems.In addition,it is worth noting that certain parameters exert a significant influence on the ratio T_(min)/Tc.For specific values of the MCG parameters,the ratio is consistent with the charged AdS black hole.The parametersγandβhave a non-negligible effect on the isenthalpic curve.
作者
张梦瑶
陈浩
Hassan Hassanabad
隆正文
杨辉
Meng-Yao Zhang;Hao Chen;Hassan Hassanabad;Zheng-Wen Long;Hui Yang(School of Mathematics and Statistics,Guizhou University,Guiyang 550025,China;School of Physics and Electronic Science,Zunyi Normal University,Zunyi 563006,China;Faculty of Physics,Shahrood University of Technology,Shahrood,Iran;Department of Physics,University of Hradec Králové,Rokitanského 62,50003 Hradec Králové,Czechia;College of Physics,Guizhou University,Guiyang 550025,China)
基金
Supported by the Doctoral Foundation of Zunyi Normal University of China(BS[2022]07,QJJ-[2022]-314)
the National Natural Science Foundation of China(12265007,12264061)
partially was supported by the Long-Term Conceptual Development of a University of Hradec Královéfor 2023,issued by the Ministry of Education,Youth,and Sports of the Czech Republic。