English

Effect of gauge boson mass on the phase structure of QED$_{3}$

High Energy Physics - Phenomenology 2010-11-08 v1

Abstract

Dynamical chiral symmetry breaking (DCSB) in QED3_{3} with finite gauge boson mass is studied in the framework of the rainbow approximation of Dyson-Schwinger equations. By adopting a simple gauge boson propagator ansatz at finite temperature, we first numerically solve the Dyson-Schwinger equation for the fermion self-energy to determine the chiral phase diagram of QED3_3 with finite gauge boson mass at finite chemical potential and finite temperature, then we study the effect of the finite gauge mass on the phase diagram of QED3_3. It is found that the gauge boson mass mam_{a} suppresses the occurrence of DCSB. The area of the region in the chiral phase diagram corresponding to DCSB phase decreases as the gauge boson mass mam_{a} increases. In particular, chiral symmetry gets restored when mam_{a} is above a certain critical value. In this paper, we use DCSB to describe the antiferromagnetic order and use the gauge boson mass to describe the superconducting order. Our results give qualitatively a physical picture on the competition and coexistence between antiferromagnetic order and superconducting orders in high temperature cuprate superconductors.

Keywords

Cite

@article{arxiv.1009.1025,
  title  = {Effect of gauge boson mass on the phase structure of QED$_{3}$},
  author = {Jian-Feng Li and Yu-Qing Zhou and Hong-Tao Feng and Wei-Min Sun and Hong-Shi Zong},
  journal= {arXiv preprint arXiv:1009.1025},
  year   = {2010}
}

Comments

10 pages, 2 figures