Fundamental Constants, Entropic Gravity and Nonextensive Equipartition Theorem
arXiv:1101.2927 · doi:10.1016/j.physa.2012.04.022
Abstract
By using the Verlinde's formalism[1], we propose that the positive numerical factor, in which Klinkhamer[2] states that it is necessary to define the fundamental length, can be associated to the parameter q of the Tsallis' nonextensive statistical mechanics[3].
minor revision, one figure. Accepted by Physica A
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- Statistical approaches on the apparent horizon entropy and the generalized second law of thermodynamics
- Considerations on Gravity as an Entropic Force and Entangled States
- Entropic force approach to noncommutative Schwarzschild black holes signals a failure of current physical ideas
- Extended CDM model and viscous dark energy: A Bayesian analysis
- Tsallis' entropy, modified Newtonian accelerations and the Tully-Fisher relation
- Black holes quasinormal modes, Loop Quantum Gravity Immirzi parameter and nonextensive statistics
- Energy equipartition and minimal radius in entropic gravity
- Nonextensive statistics, entropic gravity and gravitational force in a non-integer dimensional space
- Fugacity versus chemical potential in nonadditive generalizations of the ideal Fermi-gas