Thermodynamics and and phase transition of topological dilatonic Lifshitz-like black holes
arXiv:2008.09114 · doi:10.1002/andp.202000162
Abstract
It is known that scalar-tensor gravity models can be studied in Einstein and Jordan frames. In this paper, we consider a model of scalar-tensor gravity in Einstein's frame to calculate the Lifshitz-like black hole solutions with different horizon topologies. We study thermodynamic properties and first order van der Waals like phase transition, and find that the Lifshitz parameter affects the phase structure. In addition, we investigate thermal stability by using the behavior of heat capacity and various methods of geometrical thermodynamics.
13 pages with 8 captioned figures. Accepted for publication in AdP
References in corpus (10)
- Quantum Gravity at a Lifshitz Point
- Spectral Dimension of the Universe in Quantum Gravity at a Lifshitz Point
- Black Hole Enthalpy and an Entropy Inequality for the Thermodynamic Volume
- Geometrothermodynamics
- Lorentz symmetry breaking as a quantum field theory regulator
- Renormalization of Lorentz violating theories
- Charged Black Branes with Hyperscaling Violating Factor
- Phase transitions and geothermodynamics of black holes in dRGT massive gravity
- Conformal Mass in AdS gravity
- Power-counting and Renormalizability in Lifshitz Scalar Theory