Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1851439 | Physics Letters B | 2008 | 9 Pages |
Abstract
In this Letter, we generalize our previous work [H.T. Feng, F.Y. Hou, X. He, W.M. Sun, H.S. Zong, Phys. Rev. D 73 (2006) 016004] on the effect of finite chemical potential μ on the fermion propagator in QED3 from the rainbow approximation (bare vertex approximation) of the Dyson-Schwinger approach to the case of an improved fermion-photon vertex ansatz. We show that, for this choice of the fermion-photon vertex the fermion propagator at finite chemical potential can still be written as SËâ1(μ,p)=iγâ
pËA(pË2)+B(pË2), where pË=(pâ,p3+iμ) and Sâ1(p)=iγâ
pA(p2)+B(p2) is the fermion propagator at μ=0. By application of this result, the fermion chiral condensate is evaluated for the range Nâ[0,3.0] (N denotes the number of fermion flavors) and μâ[0,10â2] and the influence of small chemical potential on the critical number of fermion flavors Nc is analyzed. A comparison with the rainbow approximation results is made.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
Hong-tao Feng, Wei-min Sun, Deng-ke He, Hong-shi Zong,