Van der Waals-like phase transition from holographic entanglement entropy in Lorentz breaking massive gravity
arXiv:1706.04431
Abstract
In this paper, phase transition of AdS black holes in lorentz breaking massive gravity has been studied in the framework of holography. We find that there is a first order phase transition(FPT) and second order phase transition(SPT) both in Bekenstein-Hawking entropy(BHE)-temperature plane and holographic entanglement entropy(HEE)-temperature plane. Furthermore, for the FPT, the equal area law is checked and for the SPT, the critical exponent of the heat capacity is also computed. Our results confirm that the phase structure of HEE is similar to that of BHE in lorentz breaking massive gravity, which implies that HEE and BHE have some potential underlying relationship.
10 pages, 10 figures
References in corpus (9)
- Holography without translational symmetry
- Holographic Van der Waals-like phase transition in the Gauss-Bonnet gravity
- P-V criticality in AdS black holes of massive gravity
- Hairy Black Holes in Massive Gravity: Thermodynamics and Phase Structure
- Phase transitions of hairy black holes in massive gravity and thermodynamic behavior of charged AdS black holes in an extended phase space
- Holographic thermalization and gravitational collapse in the spacetime dominated by quintessence dark energy
- Stars and (Furry) Black Holes in Lorentz Breaking Massive Gravity
- Holographic thermalization in noncommutative geometry
- Holographic Van der Waals phase transition for a hairy black hole