Thermodynamics Quantities and Heat Engines of Various Black Holes
No Thumbnail Available
Files
Date
2021
Journal Title
Journal ISSN
Volume Title
Publisher
Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
According to Barrow, the impact of quantum-gravitation changes the
standard relation of entropy S = A
4
to S = A1+∆
2 , where A is actual area
and ∆ represents the quantum gravitational deformation effects. Keeping
in mind the importance of entropy in the thermodynamics of black hole,
we study the impact of Barrow entropy on the thermodynamics of charged
AdS black hole with global monopole. We derive and plot many thermo-
dynamical quantities of charged AdS black hole like temperature, entropy,
pressure, Helmholtz free energy, Gibbs free energy, heat capacity of the
system at constant pressure and volume. We study the critical behavior,
phase transition and thermal stability and find out that more useful work
can be extracted from black hole by using Barrow entropy. We also observe
that Barrow entropy rapidly increases the Gibbs free energy of black hole
which leads to more stable behavior as compare to standard relation of en-
tropy. We also discuss charged black hole as heat engine and find out the
efficiency of the black hole. In addition, we explore the thermal properties
of torus-like black hole and find useful results regarding stability.
Description
Keywords
Department of Mathematics, FA19, Mathematics, Black Hole Thermodynamics, Heat Engines, Dr. Shamaila Rani