The QCD thermal phase transition in the presence of a small chemical potential

Abstract

We propose a new method to investigate the thermal properties of QCD with a small quark chemical potential μ. Derivatives of the phase transition point with respect to μ are computed at μ=0 for 2 flavors of p-4 improved staggered fermions with ma=0.1,0.2 on a 163×4 lattice. The resulting Taylor expansion is well behaved for the small values of μ q/Tc0.1 relevant for RHIC phenomenology, and predicts a critical curve Tc(μ) in reasonable agreement with estimates obtained using exact reweighting. In addition, we contrast the case of isoscalar and isovector chemical potentials, quantify the effect of μ=0 on the equation of state, and comment on the complex phase of the fermion determinant in QCD with μ=0.

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