arXiv:hep-ph/9512384·v1·High Energy Physics — Phenomenology
Hadronic Correlation Functions in the Interacting Instanton Liquid
T. Schaefer (INT, Seattle)🇺🇸 · E.V. Shuryak (SUNY Stony Brook)🇺🇸
Abstract
We study hadronic correlation functions in the interacting instanton liquid model, both at zero and nonzero temperature . At zero we investigate the dependence of the correlators on the instanton ensemble, in particular the effect of the fermionic determinant. We demonstrate that quark-induced correlations between instantons are important, especially in the repulsive and -meson channels. We also calculate a large number of mesonic and baryonic correlation functions as a function of temperature. We find three different types of behavior as . The vector channels show a gradual melting of the resonance contribution and approach free quark behavior near the chiral phase transition. The light pseudoscalars and scalars , as well as the nucleon show stable resonance contributions, probably even surviving above . Correlation functions in the heavy scalar channels are enhanced as .
Comments: 34 pages, Revtex, 7 postscript figures