Entropic force and bouncing behaviour in -Minkowski space-time
arXiv:2502.15831 · doi:10.1016/j.physletb.2025.139670
Abstract
We generalise the entropic force description of gravity into -Minkowski space-time and derive the -deformed corrections to the Newton's gravitational force. Using this we show the appearance of logarithmic correction as the first order -deformed correction term to Bekenstein-Hawking entropy. Further we also derive the -deformed Friedmann equations and study the evolution of scale factor in -deformed space-time. Finally we show that the -deformation parameter avoids the initial singularity in early universe by providing a bounce behaviour for the case of spatially flat and closed universe.
References in corpus (16)
- Quantum Nature of the Big Bang
- Friedmann Equations from Entropic Force
- Kappa-Minkowski space-time and the star product realizations
- New realizations of Lie algebra kappa-deformed Euclidean space
- Entropic Corrections to Friedmann Equations
- Covariant realizations of kappa-deformed space
- Quantum Gravitational Corrections to the Entropy of a Schwarzschild Black Hole
- Logarithmic correction to black hole entropy from the nonlocality of quantum gravity
- Newton's Equation on the kappa space-time and the Kepler problem
- Entropic corrections to Friedmann equations and bouncing universe due to the zero-point length
- Metric perturbations in Noncommutative Gravity
- Noncommutative correction to the entropy of charged BTZ black hole
- Friedmann equations and cosmic bounce in a modified cosmological scenario
- Emergence of maximal acceleration from non-commutativity of space-time
- Newtonian cosmology and Evolution of kappa-deformed universe
- -deformed power spectrum and modified Unruh temperature