Physics – High Energy Physics – High Energy Physics - Theory
Scientific paper
2008-05-23
Prog.Theor.Phys.Suppl.174:274-285,2008
Physics
High Energy Physics
High Energy Physics - Theory
12 pages, ptptex, contribution to the NFQCD08 Symposium at YITP Kyoto, March 2008; TIT/HEP-583
Scientific paper
10.1143/PTPS.174.274
In this talk I will review my work on the description of high energy scattering in QCD, in particular the fireball observed at RHIC, as well as predictions for the LHC. The aim is to see how much we can learn about actual QCD (nonsupersymmetric, $N_c=3$), without knowing the details of the gravity dual of QCD. Experimental predictions are consistent with data, and important consequences are obtained for the LHC, in particular for the $pp$ collisions. The RHIC and LHC correspond to the regime of Froissart bound saturation, in the Heisenberg model. Asymptotically, the RHIC fireball is mapped to a dual black hole in the IR of the dual. A simple (and unique) scalar field theory model for the RHIC fireball indeed exhibits the properties of the dual black hole: a thermal horizon and aparent information loss.
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