Stable remnants and quantum gravity effects in non linear electric source Culetu black hole
arXiv:2010.00005 · doi:10.1140/epjp/s13360-020-00630-2
Abstract
In this paper, we discuss remnants and quantum gravity effects on thermodynamics of new kind of regular black hole known as Culetu black hole. The black hole results in coupling of gravity to non linear electrodynamic source. We first derive various thermodynamic quantities of interest. We then discuss in detail the existence and stability of remnants. The stability of remnants is analyzed in presence of thermal fluctuations and we observe that thermal fluctuations tend to increase the entropy at the horizon radius which is exactly the remnant radius. We then investigate non perturbative quantum gravity effects on the thermodynamics of Culetu black hole up to leading order terms.
13 pages, 11 figures, published in EPJP
References in corpus (13)
- Towards a derivation of holographic entanglement entropy
- Regular black holes with a nonlinear electrodynamics source
- Charged rotating noncommutative black holes
- Thermodynamics of a Sufficient Small Singly Spinning Kerr-AdS Black Hole
- Logarithmic corrections of charged hairy black hole in (2+1) dimension
- Thermodynamics of higher dimensional black holes with higher order thermal fluctuations
- Quantum Fluctuations of a BTZ Black Hole in Massive Gravity
- Quantum corrections to thermodynamics of quasitopological black holes
- Thermal Fluctuations in a Hyperscaling Violation Background
- Testing Quantum Gravity through Dumb Holes
- Thermodynamics of Large AdS Black Holes
- Black Holes in AdS/BCFT and Fluid/Gravity Correspondence
- Higher order quantum corrections of rotating BTZ black hole