The Proximal Chiral Phase Transition
Abstract
We consider the form of the chiral symmetry breaking piece of the effective potential in the linear sigma model. Surprisingly, it allows for a second local minimum at both zero and finite temperature. Even though chiral symmetry is not exact, and therefore is not restored in a true phase transition at finite temperature, this second minimum can nevertheless mimic many of the effects of a first order phase transition. We derive a lower limit on the height of the second minimum relative to the global minimum based on cosmological considerations; this limit is so weak as to be practically nonexistent. In high energy nuclear collisions, it may lead to observable effects in Bose-Einstein interferometry due to domain walls and to coherent pion emission.
Cite
@article{arxiv.hep-ph/9404324,
title = {The Proximal Chiral Phase Transition},
author = {Joseph I. Kapusta and Ajit M. Srivastava},
journal= {arXiv preprint arXiv:hep-ph/9404324},
year = {2009}
}
Comments
21 pages (LATEX), 6 figures in postscript (uuencoded, compressed tar file included at the end of the paper), NSF-ITP-94-28, NUC-MINN-94/3-T