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Effective Monopole Action at Finite Temperature in SU(2) Gluodynamics

High Energy Physics - Lattice 2009-11-07 v1

Abstract

Effective monopole action at finite temperature in SU(2) gluodynamics is studied on anisotropic lattices. Using an inverse Monte-Carlo method and the blockspin transformation for space directions, we determine 4-dimensional effective monopole action at finite temperature. We get an almost perfect action in the continuum limit under the assumption that the action is composed of two-point interactions alone. It depends on a physical scale bsb_s and the temperature TT. The temperature-dependence appears with respect to the spacelike monopole couplings in the deconfinement phase, whereas the timelike monopole couplings do not show any appreciable temperature-dependence. The dimensional reduction of the 4-dimensional SU(2) gluodynamics ((SU(2))4D_{4D}) at high temperature is the 3-dimensional Georgi-Glashow model ((GG)3D(GG)_{3D}). The latter is studied at the parameter region obtained from the dimensional red uction. We compare the effective instanton action of (GG)3D(GG)_{3D} with the timelike monopole action obtained from (SU(2))4D_{4D}. We find that both agree very well for T2.4TcT \ge 2.4T_c at large bb region. The dimensional reduction works well also for the effective action.

Keywords

Cite

@article{arxiv.hep-lat/0112022,
  title  = {Effective Monopole Action at Finite Temperature in SU(2) Gluodynamics},
  author = {Katsuya Ishiguro and Tsuneo Suzuki and Tateaki Yazawa},
  journal= {arXiv preprint arXiv:hep-lat/0112022},
  year   = {2009}
}

Comments

34 pages, 23 figures