Validity of the Generalized Second Law of Thermodynamics of the Universe Bounded by the Event Horizon in Holographic Dark Energy Model
arXiv:1005.3403 · doi:10.1007/s10714-009-0881-z
Abstract
In this letter, we investigate the validity of the generalized second law of thermodynamics of the universe bounded by the event horizon in the holographic dark energy model. The universe is chosen to be homogeneous and isotropic and the validity of the first law has been assumed here. The matter in the universe is taken in the form of non-interacting two fluid system- one component is the holographic dark energy model and the other component is in the form of dust.
8 pages
References in corpus (6)
- Constraints on Holographic Dark Energy from Latest Supernovae, Galaxy Clustering, and Cosmic Microwave Background Anisotropy Observations
- Restoring Holographic Dark Energy in Brane Cosmology
- Holographic Dark Energy in Braneworld Models with a Gauss-Bonnet Term in the Bulk. Interacting Behavior and the w =-1 Crossing
- Correspondence between Holographic and Gauss-Bonnet dark energy models
- The Holographic Model of Dark Energy and Thermodynamics of Non-Flat Accelerated Expanding Universe
- Holographic dark energy: quantum correlations against thermodynamical description
Cited by in corpus (10)
- The generalized second law of thermodynamics and the nature of the Entropy Function
- Cosmological Evolution Across Phantom Crossing and the Nature of the Horizon
- Validity of the Generalized Second Law of Thermodynamics of the Universe Bounded by the Event Horizon in Brane Scenario
- Thermodynamics of Lemaitre-Tolman-Bondi Model
- Holographic dark energy and validity of the generalized second law of thermodynamics in the dgp brane world
- Scalar-Tensor Theory of Gravity and Generalized Second Law of Thermodynamics on the Event Horizon
- A Study of Universal Thermodynamics in Lanczos-Lovelock gravity
- Thermodynamics in Kaluza-Klein Universe
- A Study of Universal Thermodynamics in Massive Gravity: Modified Entropy on the Horizons
- Thermodynamics and holography of tachyon cosmology