Separable Dyson-Schwinger model at zero and finite T
Abstract
Theoretical understanding of experimental results from relativistic heavy-ion collisions requires a microscopic approach to the behavior of QCD n-point functions at finite temperatures, as given by the hierarchy of Dyson-Schwinger equations, properly generalized within the Matsubara formalism. The technical complexity of related finite-temperature calculations however mandates modeling. We present a model where the QCD interaction in the infrared, nonperturbative domain, is modeled by a separable form. Results for the mass spectrum of light quark flavors at finite temperature are presented.
Cite
@article{arxiv.hep-ph/0703188,
title = {Separable Dyson-Schwinger model at zero and finite T},
author = {D. Blaschke and D. Horvatic and D. Klabucar and A. E. Radzhabov},
journal= {arXiv preprint arXiv:hep-ph/0703188},
year = {2007}
}
Comments
9 pages, 4 figures, abbreviated version of hep-ph/0703115, published in proceedings of "Progress in Quark Models", Bled, Slovenia, July 10-17, 2006, editors B. Golli, M. Rosina and S. Sirca, available at www-f1.ijs.si/Bled2006/book.pdf