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arXiv:hep-lat/9903038·v1·High Energy Physics — Lattice

Dual Higgs Mechanism based on the Dual Gauge Formalism in the Lattice QCD

Atsunori Tanaka(RCNP)🇯🇵 · Hideo Suganuma(RCNP)🇯🇵

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Abstract

We study the dual Higgs mechanism induced by monopole condensation based on the dual gauge formalism in the maximally abelian (MA) gauge in the lattice QCD. To examine ``monopole condensation'' in QCD, we study the monopole part or the monopole-current system appearing in the MA gauge by extracting the dual gluon field . First, we investigate the inter-monopole potential using the dual Wilson loop in the lattice QCD simulation. In the monopole part in the MA gauge, the inter-monopole potential is found to be flat, and can be fitted as the Yukawa potential in the infrared region. From more detailed analysis of the inter-monopole potential considering the monopole size, we estimate the effective dual-gluon mass GeV and the effective monopole size fm. Second, we study the dual gluon propagator in the MA gauge, and find that behaves as the massive vector-boson propagator with GeV in the infrared region. The effective-mass acquirement of the dual gluon field at the long distance can be regarded as the lattice QCD evidence of ``infrared monopole condensation'' in the MA gauge.

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