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Parallel tempering algorithm applied to the deconfinement transition of quenched QCD

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arxiv 2212.10155 v1 pith:THZZ2MCE submitted 2022-12-20 hep-lat

classification hep-lat
keywords transitionalgorithmcontinuuminfiniteorderparalleltemperinganalyze
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

QCD with infinite heavy quark masses exhibits a first-order thermal transition which is driven by the spontaneous breaking of the global $\mathcal{Z}_3$ center symmetry. We analyze the corresponding order parameter, namely the Polyakov loop and its moments, and show, with a rigorous finite size scaling, that in the continuum limit the transition is of first order. We show that the use of a parallel tempering algorithm can significantly reduce the large auto-correlation times which are mainly caused by the supercritical slowing down. As a result, we calculate the transition temperature $w_0 T_c$ with per-mill precision, and the latent heat, carrying out controlled continuum and infinite volume extrapolations.

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