English

An effective model for the QCD phase transitions at finite baryon density

High Energy Physics - Phenomenology 2015-06-30 v2 Nuclear Theory

Abstract

We introduce an effective quark-meson-nucleon model for the QCD phase transitions at finite baryon density. The nucleon and the quark degrees of freedom are described within a unified framework of a chiral linear sigma model. The deconfinement transition is modeled through a simple modification of the distribution functions of nucleons and quarks, where an additional auxiliary field, the bag field, is introduced. The bag field plays a key role in converting between the nucleon and the quark degrees of freedom. The model predicts that the chiral and the deconfinement phase transitions are always separated. Depending on the model parameters, the chiral transition occurs in the baryon density range of (1.515.5)n0(1.5-15.5)n_0, while the deconfinement transition occurs above 5n05 n_0, where n0n_0 is the saturation density.

Keywords

Cite

@article{arxiv.1502.05969,
  title  = {An effective model for the QCD phase transitions at finite baryon density},
  author = {Sanjin Benic and Igor Mishustin and Chihiro Sasaki},
  journal= {arXiv preprint arXiv:1502.05969},
  year   = {2015}
}

Comments

References added, some points further elaborated, main conclusions unchanged, accepted in Phys Rev D