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Relative weights approach to SU(3) gauge theories with dynamical fermions at finite density

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arxiv 1603.09654 v1 pith:DPL4VBZH submitted 2016-03-31 hep-lat

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

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We derive effective Polyakov line actions for SU(3) gauge theories with staggered dynamical fermions, for a small sample of lattice couplings, lattice actions, and lattice extensions in the time direction. The derivation is via the method of relative weights, and the theories are solved at finite chemical potential by mean field theory. We find in some instances that the long-range couplings in the effective action are very important to the phase structure, and that these couplings are responsible for long-lived metastable states in the effective theory. Only one of these states corresponds to the underlying lattice gauge theory.

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    A constrained HMC algorithm with the Rattle integrator measures the derivative of the effective Higgs potential over the full field range in 4D Abelian-Higgs and 5D SU(2) gauge theories.

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