Natural Cutoffs effect on Charged Rotating TeV-Scale Black Hole Thermodynamics
arXiv:1510.04399 · doi:10.1142/S0218271817500432
Abstract
We study the thermodynamics of charged rotating black hole in large extra dimensions scenario where quantum gravity effects are taken into account. We consider the effects of minimal length, minimal momentum, and maximal momentum as natural cutoffs on the thermodynamics of charged rotating TeV-scale black holes. In this framework the effect of the angular momentum and charge on the thermodynamics of the black hole are discussed. We focus also on frame dragging and Sagnac effect of the micro black holes.
22 pages, 8 figures
References in corpus (12)
- Black Hole Bound on the Number of Species and Quantum Gravity at LHC
- Hawking radiation from rotating black holes in anti-de Sitter spaces via gauge and gravitational anomalies
- Colorful quantum black holes at the LHC
- Natural Cutoffs and Quantum Tunneling from Black Hole Horizon
- Rotating Black Holes in Higher Dimensional Einstein-Maxwell Gravity
- Black Holes at the LHC
- Can we measure structures to a precision better than the Planck length?
- On the Existence of the Logarithmic Correction Term in Black Hole Entropy-Area Relation
- Minimal Uncertainty in Momentum: The Effects of IR Gravity on Quantum Mechanics
- Quantum Gravity Effects On Charged Micro Black Holes Thermodynamics
- Spinning Higher Dimensional Einstein-Yang-Mills black holes
- Charged Massive Particle's Tunneling From Charged Non-Rotating Micro Black Hole