Thermodynamics and logarithmic corrections of symmergent black holes

被引:33
作者
Ali, Riasat [1 ]
Babar, Rimsha [2 ]
Akhtar, Zunaira [2 ]
Ovgun, Ali [3 ]
机构
[1] GC Univ Faisalabad, Dept Math, Layyah Campus, Layyah 31200, Pakistan
[2] Univ Educ, Div Sci & Technol, Lahore 54590, Pakistan
[3] Eastern Mediterranean Univ, Phys Dept, Via Mersin 10, TR-99628 Famagusta, North Cyprus, Turkiye
关键词
Black hole; Symmergent gravity; Modified lagrangian equation; Hawking radiation; Quantum tunneling; WKB method; first order correction of thermodynamics; HAWKING RADIATION; VECTOR PARTICLES; THERMAL FLUCTUATIONS; GRAVITY; ENTROPY; SCHWARZSCHILD; SCALAR;
D O I
10.1016/j.rinp.2023.106300
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, we study quantum gravity effect on the symmergent black hole which is derived from quadratic-curvature gravity. To do so, we use the Klein-Gordon equation which is modified by generalized uncertainty principle (GUP). After solving the field equations, we examine the symmergent black hole's tunneling and Hawking temperature. We explore the graphs of the temperature through the outer horizon to check the GUP influenced conditions of symmergent black hole stability. We also explain how symmergent black holes behave physically when influenced by quantum gravity. The impacts of thermal fluctuations on the thermodynamics of a symmergent black holes spacetime are examined. We first evaluate the model under consideration's thermodynamic properties, such as its Hawking temperature, angular velocity, entropy, and electric potential. We evaluate the logarithmic correction terms for entropy around the equilibrium state in order to examine the impacts of thermal fluctuations. In the presence of these correction terms, we also examine the viability of the first law of thermodynamics. Finally, we evaluate the system's stability using the Hessian matrix and heat capacity. It is determined that a stable model is generated by logarithmic corrections arising from thermal fluctuations.
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页数:8
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