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arXiv:1403.3809·v1·High Energy Physics — Lattice

Non-Abelian dual Meissner effect and confinement/deconfinement phase transition in SU(3) Yang-Mills theory

Akihiro Shibata🇯🇵 · Kei-Ichi Kondo🇯🇵 · Seikou Kato🇯🇵 · Toru Shinohara🇯🇵

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Abstract

The dual superconductivity is a promising mechanism for quark confinement. We proposed the non-Abelian dual superconductivity picture for SU(3) Yang-Mills theory, and demonstrated the restricted field dominance (called conventionally "Abelian" dominance), and non-Abelian magnetic monopole dominance in the string tension. In the last conference, we have demonstrated by measuring the chromoelectric flux that the non-Abelian dual Meissner effect exists and determined that the dual superconductivity for SU(3) case is of type I, which is in sharp contrast to the SU(2) case: the border of type I and type II. In this talk, we focus on the confinement/deconfinemen phase transition and the non-Abelian dual superconductivity at finite temperature: We measure the chromoelectric flux between a pair of static quark and antiquark at finite temperature, and investigate its relevance to the phase transition and the non-Abelian dual Meissner effect.

Comments: 7 pages, 6 figures, Presented at 31st International Symposium on Lattice Field Theory LATTICE 2013, July 29 -- August 3, 2013, Mainz, Germany

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