News about TeV-scale Black Holes
arXiv:hep-ph/0510236 · doi:10.1016/j.nuclphysa.2006.06.153
Abstract
Collider produced black holes are the most exciting prediction from models with large extra dimensions. These black holes exist in an extreme region, in which gravity meets quantum field theory, particle physics, and thermodynamics. An investigation of the formation and decay processes can therefore provide us with important insights about the underlying theory and open a window to the understanding of Physics at the Planck scale. The production and the evaporation of TeV-scale black holes yields distinct signatures that have been examined closely during the last years, with analytical approaches as well as by use of numerical simulations. I present new results for the LHC, which take into account that, instead of a final decay, a black hole remnant can be left. This is a summary of the talk given at the Quark Matter 2005, Budapest, Hungary, Aug. 2005.
Talk given at the Quark Matter 2005, Budapest, Hungary, Aug. 2005
References in corpus (7)
- Black Holes in Theories with Large Extra Dimensions: a Review
- Black hole and brane production in TeV gravity: A review
- Exploring Higher Dimensional Black Holes at the Large Hadron Collider
- Study of Black Holes with the ATLAS detector at the LHC
- What Black Holes Can Teach Us
- Trapping Black Hole Remnants
- Black Holes at Future Colliders and Beyond - a Review
Cited by in corpus (7)
- No quantum gravity signature from the farthest quasars
- Quantum Gravity Effects in Black Holes at the LHC
- Minimum length effects in black hole physics
- Black Hole Remnants at the LHC
- Stable TeV - Black Hole Remnants at the LHC: Discovery through Di-Jet Suppression, Mono-Jet Emission and a Supersonic Boom in the Quark-Gluon Plasma
- Charged Black Hole Remnants at the LHC
- Mini Black Holes at the LHC: Discovery Through Di-Jet Suppression, Mono-Jet Emission and a Supersonic Boom in the Quark-Gluon Plasma in ALICE, ATLAS and CMS