A Study of Generalized Second Law of Thermodynamics in Magnetic Universe in the light of Non-Linear Electrodynamics
arXiv:1105.5301 · doi:10.1016/j.physletb.2011.08.076
Abstract
In this work, we have considered the magnetic universe in non-linear electrodynamics. The Einstein's field equations for non-flat FRW model have been considered when the universe is filled with the matter and magnetic field only. We have discussed the validity of the generalized second law of thermodynamics of the magntic universe bounded by Hubble, apparent, particle and event horizons using Gibb's law and the first law of thermodynamics for interacting and non-interacting scenarios. It has been shown that the GSL is always satisfied for Hubble, apparent and particle horizons but for event horizon, the GSL is violated initially and satisfied at late stage of the universe.
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Cited by in corpus (5)
- Nonlinear Electrodynamics in Gravity and Generalized Second Law of Thermodynamics
- Stability of Accelerated Expansion in Nonlinear Electrodynamics
- Thermodynamics of Evolving Lorentzian Wormhole at Apparent and Event Horizons
- Dynamics of self-gravitating systems in non-linearly magnetized chameleonic Brans-Dicke gravity
- Observational Study of Higher Dimensional Magnetic Universe in Non-linear Electrodynamics