Chiral restoration and deconfinement in two-color QCD with two flavors of staggered quarks

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Abstract

In preparation of lattice studies of the two-color QCD phase diagram we study chiral restoration and deconfinement at finite temperature with two flavors of staggered quarks using an RHMC algorithm on GPUS. We first study unquenching effects in local Polyakov loop distributions, and the Polyakov loop potential obtained via Legendre transformation, in a fixed-scale approach for heavier quarks. We also present the chiral condensate and the corresponding susceptibility over the lattice coupling across the chiral transition for lighter quarks. Using Ferrenberg-Swendsen reweighting we extract the maxima of the chiral susceptibility in order to determine pseudocritical couplings on various lattices suitable for chiral extrapolations. These are then used to fix the relation between coupling and temperature in the chiral limit.

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Scheffler, D., Schmidt, C., Smith, D., & Von Smekal, L. (2013). Chiral restoration and deconfinement in two-color QCD with two flavors of staggered quarks. In Proceedings of Science (Vol. 29-July-2013). Proceedings of Science (PoS). https://doi.org/10.22323/1.187.0191

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