English

Difermion condensates in vacuum in 2-4D four-fermion interaction models

High Energy Physics - Theory 2008-02-17 v3

Abstract

Theoretical analysis of interplay between the condensates <qˉq><\bar{q}q> and <qq><qq> in vacuum is generally made by relativistic effective potentials in the mean field approximation in 2D, 3D and 4D models with two flavor and NcN_c color massless fermions. It is found that in ground states of these models, interplay between the two condensates mainly depend on the ratio GS/HSG_S/H_S for 2D and 4D case or GS/HPG_S/H_P for 3D case, where GSG_S, HSH_S and HPH_P are respectively the coupling constants in a scalar (qˉq)(\bar{q}q), a scalar (qq)(qq) and a pseudoscalar (qq)(qq) channel. In ground states of all the models, only pure <qˉq><\bar{q}q> condensates could exist if GS/HSG_S/H_S or GS/HPG_S/H_P is bigger than the critical value 2/Nc2/N_c, the ratio of the color numbers of the fermions entering into the condensates <qq><qq> and <qˉq><\bar{q}q>. As GS/HSG_S/H_S or GS/HPG_S/H_P decreases to the region below 2/Nc2/N_c, differences of the models will manifest themselves. Depending on different models, and also on NcN_c in 3D model, one will have or have no the coexistence phase of the two condensates, besides the pure <qq><qq> condensate phase. The GSHSG_S-H_S (or GSHPG_S-H_P) 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