Uncertainty Principles and Maximum Entropic Force
arXiv:2605.07992 · doi:10.1140/epjc/s10052-026-15821-x
Abstract
We consider quantum gravity corrections to the maximum entropic force that arise from several gravitational uncertainty principles. These include the Generalized Uncertainty Principle (GUP), the Extended Uncertainty Principle (EUP), the Generalized Extended Uncertainty Principle (GEUP), and the Linear-Quadratic GUP (LQGUP). We find that the modified entropic force depends on the dimensionless parameters of the uncertainty principles and, thus, on the underlying quantum gravity theory. Furthermore, the entropic force, which is quantum gravity corrected in the framework of the extended uncertainty principles, also depends on the number of Planck areas that made the ``EUP area".
10 pages, LaTeX, no figures, to appear in Eur.Phys.J. C
References in corpus (16)
- On the Origin of Gravity and the Laws of Newton
- Thermodynamical Aspects of Gravity: New insights
- Universality of Quantum Gravity Corrections
- Discreteness of Space from the Generalized Uncertainty Principle
- A proposal for testing Quantum Gravity in the lab
- Extended Uncertainty Principle Black Holes
- The Maximum Tension Principle in General Relativity
- Maximum Tension: with and without a cosmological constant
- GUP-Corrected Black Hole Thermodynamics and the Maximum Force Conjecture
- General relativity and cosmology derived from principle of maximum power or force
- Quantum Gravity Corrections and Entropy at the Planck time
- Reply to "Comment on 'Universality of Quantum Gravity Corrections' "
- Abolishing the maximum tension principle
- Tests For Maximum Force and Maximum Power
- Theories with maximal acceleration
- Bounded compactness from G(E)UP