Thermodynamical analysis on a braneworld scenario with curvature corrections
arXiv:1109.3287 · doi:10.1016/j.physletb.2011.09.031
Abstract
We study the thermodynamics of some cosmological models based on modified gravity, a braneworld with induced gravity and curvature effect. Dark energy component seems necessary if the models are to approach thermal equilibrium in the long run.
7 pages, 2 figures. Accepted for publication on PLB
References in corpus (10)
- Dark Energy and the Accelerating Universe
- Dark Energy
- Thermodynamic Behavior of Friedmann Equation at Apparent Horizon of FRW Universe
- Unified First Law and Thermodynamics of Apparent Horizon in FRW Universe
- Thermodynamic route to Field equations in Lanczos-Lovelock Gravity
- Dark Energy and Dark Gravity
- Le Chatelier-Braun principle in cosmological physics
- Deep Connection Between Thermodynamics and Gravity in Gauss-Bonnet Braneworld
- Thermodynamics of Apparent Horizon in Brane World Scenario
- Observational constraints on Chaplygin cosmology in a braneworld scenario with induced gravity and curvature effect
Cited by in corpus (6)
- Thermodynamics in Closed Universe with Entropy Corrections
- Entropy Maximization in the Emergent Gravity Paradigm
- A thermodynamic characterization of future singularities?
- Gravitational entropy of local cosmic voids
- A thermodynamic point of view on dark energy models
- Energy definition and dark energy: a thermodynamic analysis