English

The chiral transition in a magnetic background: Finite density effects and the functional renormalization group

High Energy Physics - Phenomenology 2012-08-02 v3

Abstract

We compute the phase diagram of the quark-meson model at finite temperature, finite baryon chemical potential μB=3μ\mu_B=3\mu and constant external magnetic field BB, using the functional renormalization group. Our results show that the critical temperature increases as a function of BB at μ=0\mu=0, but for values μ\mu larger than about 210-225 MeV, the opposite behavior is realized. As the magnetic field increases, the critical point (T,μ)(T^*,\mu^*) moves from large μ\mu, small TT towards small μ\mu, larger TT in the μ\mu--TT phase diagram.

Keywords

Cite

@article{arxiv.1204.3360,
  title  = {The chiral transition in a magnetic background: Finite density effects and the functional renormalization group},
  author = {Jens O. Andersen and Anders Tranberg},
  journal= {arXiv preprint arXiv:1204.3360},
  year   = {2012}
}

Comments

16 pages and 6 figures v3: typos fixed and layout of figs improved. Matches published version