Modified Friedmann Equations from Tsallis Entropy
arXiv:1806.03996 · doi:10.1016/j.physletb.2018.08.036
Abstract
It was shown by Tsallis and Cirto that thermodynamical entropy of a gravitational system such as black hole must be generalized to the non-additive entropy, which is given by , where is the horizon area and is the nonextensive parameter \cite{Tsa}. In this paper, by taking the entropy associated with the apparent horizon of the Friedmann-Robertson-Walker (FRW) Universe in the form of Tsallis entropy, and assuming the first law of thermodynamics, , holds on the apparent horizon, we are able to derive the corresponding Friedmann equations describing the dynamics of the universe with any spatial curvature. We also examine the time evolution of the total entropy and show that the generalized second law of thermodynamics is fulfilled in a region enclosed by the apparent horizon. Then, modifying the emergence proposal of gravity proposed by Padmanabhan and calculating the difference between the surface degrees of freedom and the bulk degrees of freedom in a region of space, we again arrive at the modified Friedmann equation of the FRW Universe with any spatial curvature which is the same as one obtained from the first law of thermodynamics. We also study the cosmological consequences of Tsallis cosmology. Interestingly enough, we find that this model can explain simultaneously the late time acceleration in the universe filled with pressureless matter without invoking dark energy, as well as the early deceleration. Besides, the age problem can be circumvented automatically for an accelerated universe and is estimated larger than age of the universe in standard cosmology. For , we find Gyr Gyr, which is consistent with recent observations. We also comment on the density perturbation in the context of Tsallis cosmology.
11 pages, two columns. A new section regarding the cosmological consequences of this model was added. Also text was revised and new references added
References in corpus (28)
- Thermodynamic Behavior of Friedmann Equation at Apparent Horizon of FRW Universe
- Unified First Law and Thermodynamics of Apparent Horizon in FRW Universe
- Friedmann Equations of FRW Universe in Scalar-tensor Gravity, f(R) Gravity and First Law of Thermodynamics
- Thermodynamic route to Field equations in Lanczos-Lovelock Gravity
- Hawking Radiation of Apparent Horizon in a FRW Universe
- Quantum Tunneling and Back Reaction
- Thermodynamical Properties of Apparent Horizon in Warped DGP Braneworld
- Deep Connection Between Thermodynamics and Gravity in Gauss-Bonnet Braneworld
- Friedmann Equations from Entropic Force
- Thermodynamics of Apparent Horizon in Brane World Scenario
- Entropy of Null Surfaces and Dynamics of Spacetime
- Einstein's equations as a thermodynamic identity: The cases of stationary axisymmetric horizons and evolving spherically symmetric horizons
- Black hole quantum tunnelling and black hole entropy correction
- Thermodynamics of apparent horizon and modified Friedman equations
- Entropic Corrections to Friedmann Equations
- Power-law corrections to entanglement entropy of horizons
- The generalized second law of thermodynamics in the accelerating universe
- Gravity: A New Holographic Perspective
- Statistical Origin of Gravity
- Notes on Entropy Force in General Spherically Symmetric Spacetimes
- Emergence of Cosmic Space and the Generalized Holographic Equipartition
- Entropic Corrections to Einstein Equations
- Cosmological Constraints on the Modified Entropic Force Model
- Entropic force and entanglement system
- Entropic force, holography and thermodynamics for static space-times
- Viscous Cosmology and Thermodynamics of Apparent Horizon
- Generalized Second Law of Thermodynamics in Extended Theories of Gravity
- The holographic screen at low temperatures
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