PRODUCTION AND EVAPORATION OF PLANCK SCALE BLACK HOLES AT THE LHC
Piero Nicolini, Jonas Mureika, Euro Spallucci, Elizabeth Winstanley, Marcus Bleicher
Abstract
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Piero Nicolini, Jonas Mureika, Euro Spallucci, Elizabeth Winstanley, Marcus Bleicher
Abstract
Open-access reader
We review the phenomenology of mini black holes at colliders in light of the latest data from the LHC. By improving the conventional production cross-section, we show that the current non-observation of black hole signals can be explained in terms of quantum gravity effects. In the most optimistic case, black hole production could take place at a scale slightly above the LHC design energy. We also analyse possible new signatures of quantum-corrected Planck-scale black holes: in contrast to the semiclassical scenario the emission would take place in terms of soft particles mostly on the brane.
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We review the phenomenology of mini black holes at colliders in light of the latest data from the LHC. By improving the conventional production cross-section, we show that the current non-observation of black hole signals can be explained in terms of quantum gravity effects. In the most optimistic case, black hole production could take place at a scale slightly above the LHC design energy. We also analyse possible new signatures of quantum-corrected Planck-scale black holes: in contrast to the semiclassical scenario the emission would take place in terms of soft particles mostly on the brane.
Key concepts: Virtual black hole, Physics, Large Hadron Collider, Phenomenology (philosophy), Micro black hole, Planck scale, Hawking radiation, Black hole (networking)