Black hole remnants due to GUP or quantum gravity?
arXiv:gr-qc/0511054 · doi:10.1016/j.physletb.2006.03.009
Abstract
Based on the micro-black hole \emph{gedanken} experiment as well as on general considerations of quantum mechanics and gravity the generalized uncertainty principle (GUP) is analyzed by using the running Newton constant. The result is used to decide between the GUP and quantum gravitational effects as a possible mechanism leading to the black hole remnants of about Planck mass.
3 pages
References in corpus (4)
Cited by in corpus (15)
- Black Hole Remnants and the Information Loss Paradox
- Black hole thermodynamics with generalized uncertainty principle
- Quantum Mechanics and the Generalized Uncertainty Principle
- Regular black hole remnants and graviatoms with de Sitter interior as heavy dark matter candidates probing inhomogeneity of early universe
- Self-Completeness and the Generalized Uncertainty Principle
- Comparing two approaches to Hawking radiation of Schwarzschild-de Sitter black holes
- Novel black holes in higher derivative gravity
- Modified clock inequalities and modified black hole lifetime
- Schwinger's Model of Angular Momentum with GUP
- The holographic space-time and black hole remnants as dark matter
- New Deformed Heisenberg Algebra from the -Deformed Model of Dark Matter
- Corrections to the thermodynamic quantities of Bose system by the generalized uncertainty principle
- Island rules for the noncommutative black hole
- Effect of Quantum Gravity on Specific Heat of Solid
- Dimensionally-dependent uncertainty relations, or why we (probably) won't see micro-black holes at the LHC, even if large extra dimensions exist