English

Lattice QCD Study for Gluon Propagator and Gluon Spectral Function

High Energy Physics - Lattice 2011-03-31 v1 High Energy Physics - Phenomenology

Abstract

We study the gluon propagator in the Landau gauge in SU(3) lattice QCD at β\beta=5.7, 5.8 and 6.0 at the quenched level. The Euclidean Landau-gauge gluon propagator D(r)Dμμaa(x)/24D(r)\equiv D_{\mu\mu}^{aa}(x)/24 is found to be well described by four-dimensional Yukawa-type function emr/re^{-mr}/r in the infrared and intermediate region of r(xμxμ)1/2r \equiv (x_\mu x_\mu)^{1/2} = 0.1 \sim 1.0fm. The infrared effective gluon mass is obtained as mm \simeq 600MeV. Associated with the 4D Yukawa-type gluon propagator, we derive analytical expressions for the zero-spatial-momentum propagator D0(t)D_0(t), the effective mass Meff(t)M_{\rm eff}(t), and the spectral function ρ(ω)\rho(\omega) of the gluon field. Remarkably, the obtained gluon spectral function ρ(ω)\rho(\omega) is almost negative definite, except for a positive δ\delta-functional peak at ω=m\omega=m. Since the Yukawa-type propagation indicates a three-dimensional space-time character, we consider a hypothesis of an effective dimensional reduction by generalized Parisi-Sourlas mechanism in a stochastic color-magnetic vacuum of infrared QCD.

Keywords

Cite

@article{arxiv.1011.0007,
  title  = {Lattice QCD Study for Gluon Propagator and Gluon Spectral Function},
  author = {Hideo Suganuma and Takumi Iritani and Arata Yamamoto and Hideaki Iida},
  journal= {arXiv preprint arXiv:1011.0007},
  year   = {2011}
}
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