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      Fractional Charge and Confinement of Quarks

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          Abstract

          In quantum chromodynamics with static quarks the confinement-deconfinement phase transition is connected to the spontaneous breaking of the global Z3 center symmetry. This symmetry is lost when one considers dynamical quarks. Owing to the fractional electric charge of quarks, we recover a global Z6 center symmetry when QCD is regarded as a part of the Standard Model. We present results from QCD-like theories extended by electromagnetic interactions and show that the weak coupling limit of the QED part of the model results in a center-like symmetry with disorder in the vacuum. This can be seen explicitly in a character expansion of the fermion determinant. Further, we show that corresponding center averages project the fermion determinant on N-ality zero and discuss whether the additional center symmetry can be used to eliminate the fermion sign problem in QCD with fundamental quarks.

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          Unity of All Elementary-Particle Forces

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            Phase diagrams of lattice gauge theories with Higgs fields

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              Author and article information

              Journal
              15 November 2013
              Article
              1311.3854
              e7bb376d-a1ab-40a1-9954-879465999cb4

              http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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              7 pages, 2 figures, presented at the 31st International Symposium on Lattice Field Theory (Lattice 2013), 29 July - 3 August 2013, Mainz, Germany
              hep-lat

              High energy & Particle physics
              High energy & Particle physics

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