Color Confinement in Coulomb Gauge QCD(Particles and Fields)
スポンサーリンク
概要
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We study the long-range behavior of the heavy quark potential in Coulomb gauge using a quenched SU(3) lattice gauge simulation with partial-length Polyakov line correlators. We show that the Coulomb heavy quark potential associated with the instantaneous part of gluon propagators in Coulomb gauge, presents a linearly rising behavior at large distances, and the resulting Coulomb string tension is greater than the Wilson loop string tension, which can be explained by Zwanziger's inequality. The linearly rising behavior of the Coulomb heavy quark potential persists even in the deconfinement phase. The heavy quark potential in Lorentz gauge shows completely different behavior than that in Coulomb gauge. Our SU(3) result, i.e., the Coulomb heavy quark potential is confining, qualitatively agrees with that of the SU(2) analysis carried out by Greensite, Olejnik and Zwanziger.
- 2006-01-25
著者
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NAKAMURA Atsushi
Research Institute for Information Science and Education, Hiroshima University
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SAITO Takuya
Research Institute for Information Science and Education, Hiroshima University
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SAITO Takuya
Integrated Information Center, Kochi University
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Saito Takuya
Research Center For Nuclear Physics
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Nakamura Atsushi
Hiroshima Univ. Higashi‐hiroshima Jpn
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Saito Takuya
Kochi Univ. Kochi Jpn
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SAITO Takuya
Department of Physics, Kyushu University
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