Skip to content

Aspects of high density effective theory in QCD

Deog Ki Hong

hep-pharXiv:hep-ph/9905523

Abstract

We study an effective theory of QCD at high density in detail, including the finite temperature effects and the leading order correction in 1/μ expansion. We investigate the Cooper pair gap equation and find that the color-flavor locking phase is energetically preferred at high density. We also find the color-superconducting phase transition occurs in dense quark matter when the chemical potential is larger than 250 100~ MeV and the temperature is lower than 0.57 times the Cooper pair gap in the leading order in the hard-dense-loop approximation. The quark-neutrino four-Fermi coupling and the quark-axion coupling receive significant corrections in dense quark matter.

Create a lesson