scholarly journals Effects of dark energy on the efficiency of charged AdS black holes as heat engines

Author(s):  
Hang Liu ◽  
Xin-He Meng
2016 ◽  
Vol 94 (1) ◽  
pp. 35-41
Author(s):  
J. Naji

New solutions of four-dimensional asymptotically anti-de Sitter black holes with scalar hair are considered and Hawking temperature in the context of dark energy is discussed using the tunneling method. We obtain a modification of the Hawking temperature because of the presence of dark energy.


2018 ◽  
Vol 78 (10) ◽  
Author(s):  
J. P. Morais Graça ◽  
Iarley P. Lobo ◽  
Valdir B. Bezerra ◽  
H. Moradpour

2021 ◽  
Vol 104 (10) ◽  
Author(s):  
Shan-Quan Lan ◽  
Jie-Xiong Mo ◽  
Gu-Qiang Li ◽  
Xiao-Bao Xu

Author(s):  
Soodeh Zarepour

In this paper, we study a new class of holographic heat engines via charged AdS black hole solutions of Einstein gravity coupled with logarithmic nonlinear [Formula: see text] gauge theory. So, logarithmic [Formula: see text] AdS black holes with a horizon of positive, zero and negative constant curvatures are considered as a working substance of a holographic heat engine and the corrections to the usual Maxwell field are controlled by nonlinearity parameter [Formula: see text]. The efficiency of an ideal cycle ([Formula: see text]), consisting of a sequence of isobaric [Formula: see text] isochoric [Formula: see text] isobaric [Formula: see text] isochoric processes, is computed using the exact efficiency formula. It is shown that [Formula: see text], with [Formula: see text] the Carnot efficiency (the maximum efficiency available between two fixed temperatures), decreases as we move from the strong coupling regime ([Formula: see text]) to the weak coupling domain ([Formula: see text]). We also obtain analytic relations for the efficiency in the weak and strong coupling regimes in both low and high temperature limits. The efficiency for planar and hyperbolic logarithmic [Formula: see text] AdS black holes is computed and it is observed that efficiency versus [Formula: see text] behaves in the same qualitative manner as the spherical black holes.


2021 ◽  
Vol 9 ◽  
Author(s):  
Aditya Singh ◽  
Aritra Ghosh ◽  
Chandrasekhar Bhamidipati

In this paper, we study the effect of dark energy on the extended thermodynamic structure and interacting microstructures of black holes in AdS, through an analysis of thermodynamic geometry. Considering various limiting cases of the novel equation of state obtained in charged rotating black holes with quintessence, and taking enthalpy H as the key potential in the extended phase space, we scrutinize the behavior of the Ruppeiner curvature scalar R in the entropy-pressure (S,P)-plane (or equivalently in the temperature-volume (T,V)-plane). Analysis of R empirically reveals that dark energy parameterized by α, significantly alters the dominant interactions of neutral, charged and slowly rotating black hole microstructures. In the Schwarzschild-AdS case: black holes smaller than a certain size continue to have attractive interactions whereas larger black holes are completely dominated by repulsive interactions which arise to due dark energy. For charged or rotating AdS black holes with quintessence, R can change sign at multiple points depending upon the relation between α and charge q or angular momentum J. In particular, above a threshold value of α, R is never negative at all, suggesting heuristically that the repulsive interactions due to quintessence are long ranged as opposed to the previously known short ranged repulsion in charged AdS black holes. A mean field interaction potential is proposed whose extrema effectively capture the points where the curvature R changes sign.


Sign in / Sign up

Export Citation Format

Share Document