Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8197440 | Physics Letters B | 2007 | 5 Pages |
Abstract
Using chiral perturbation theory we investigate the QCD shear viscosity (η) to entropy density (s) ratio below the deconfinement temperature (â¼170MeV) with zero baryon number density. It is found that η/s of QCD is monotonically decreasing in temperature (T) and reaches 0.6 with estimated â¼50% uncertainty at T=120MeV. A naive extrapolation of the leading order result shows that η/s reaches the 1/4Ï minimum bound proposed by Kovtun, Son, and Starinets using string theory methods at Tâ¼200MeV. This suggests a phase transition or cross over might occur at Tâ²200MeV in order for the bound to remain valid. Also, it is natural for η/s to stay close to the minimum bound around the phase transition temperature as was recently found in heavy ion collisions.
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Authors
Jiunn-Wei Chen, Eiji Nakano,