Difermion condensates in vacuum in 2-4D four-fermion interaction models
Abstract
Theoretical analysis of interplay between the condensates and in vacuum is generally made by relativistic effective potentials in the mean field approximation in 2D, 3D and 4D models with two flavor and color massless fermions. It is found that in ground states of these models, interplay between the two condensates mainly depend on the ratio for 2D and 4D case or for 3D case, where , and are respectively the coupling constants in a scalar , a scalar and a pseudoscalar channel. In ground states of all the models, only pure condensates could exist if or is bigger than the critical value , the ratio of the color numbers of the fermions entering into the condensates and . As or decreases to the region below , differences of the models will manifest themselves. Depending on different models, and also on in 3D model, one will have or have no the coexistence phase of the two condensates, besides the pure condensate phase. The (or ) phase diagrams in these models are given. The results also implicate a real constraint on two-flavor QCD-analogous NJL model.
Keywords
Cite
@article{arxiv.0704.0841,
title = {Difermion condensates in vacuum in 2-4D four-fermion interaction models},
author = {Bang-Rong Zhou},
journal= {arXiv preprint arXiv:0704.0841},
year = {2008}
}
Comments
11 pages, 4 figures, General Poster 76 (Physical sciences) at 2007 AAAS Annual Meeting, San Francisco, Feb. 14-20, 2007, minor typos corrected,acknowledgment to financial supporter added