arXiv · hep-ph/0509361
The QCD equation of state for two flavours at non-zero chemical potential
Abstract
We present results of a simulation of 2 flavour QCD on a $16^3\times4$ lattice using p4-improved staggered fermions with bare quark mass $m/T=0.4$. Derivatives of the thermodynamic grand canonical partition function $Z(V,T,μ_u,μ_d)$ with respect to chemical potentials $μ_{u,d}$ for different quark flavours are calculated up to sixth order, enabling estimates of the pressure and the quark number density as well as the chiral condensate and various susceptibilities as functions of $μ_{u,d}$ via Taylor series expansion. Results are compared to high temperature perturbation theory as well as a hadron resonance gas model. We also analyze baryon as well as isospin fluctuations and discuss the relation to the chiral critical point in the QCD phase diagram. We moreover discuss the dependence of the heavy quark free energy on the chemical potential.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
S. Ejiri, C. R. Allton, M. Döring, S. J. Hands, O. Kaczmarek, F. Karsch, E. Laermann, K. Redlich. 2005-09-30. The QCD equation of state for two flavours at non-zero chemical potential. https://doi.org/10.1016/j.nuclphysa.2006.06.023
Cite the original work for its findings. Save a collection to share your selection of sources.