A Study of Universal Thermodynamics in Brane World Scenario
arXiv:1503.07750 · doi:10.1155/2015/430764
Abstract
A study of Universal thermodynamics is done in the frame work of RSII brane model and DGP brane scenario. The Universe is chosen as FRW model bounded by apparent or event horizon. Assuming extended Hawking temperature on the horizon, the unified first law is examined for perfect fluid (with constant equation of state) and modified Chaplygin gas model. As a result there is a modification of Bekenstein entropy on the horizons. Further the validity of the generalized second law of thermodynamics and thermodynamical equilibrium are also investigated.
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Cited by in corpus (12)
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- Cosmological consequences in the framework of generalized Rastall theory of gravity
- Thermodynamics of scalar-tensor theory with non-minimally derivative coupling
- A Study of Universal Thermodynamics in Lanczos-Lovelock gravity
- Thermodynamics of FRW Universe With Chaplygin Gas Models
- Modified Bekenstein-Hawking system in gravity
- Thermodynamic analysis of gravitational field equations in Lyra manifold
- Thermodynamics of general scalar-tensor theory with non-minimally derivative coupling
- On the thermodynamics of reconciling quantum and gravity
- Thermodynamical study of FRW universe in Quasi-Topological Theory
- Thermodynamics of Gravitationally Induced Particle Creation Scenario in DGP Braneworld
- Thermodynamics of scalar field models with kinetic corrections