English

Hadron Physics and Confinement Physics in Lattice QCD

High Energy Physics - Phenomenology 2009-12-08 v1

Abstract

We are aiming to construct Quark Hadron Physics and Confinement Physics based on QCD. Using SU(3)c_c lattice QCD, we are investigating the three-quark potential at T=0 and T0T \ne 0, mass spectra of positive and negative-parity baryons in the octet and the decuplet representations of the SU(3) flavor, glueball properties at T=0 and T0T \ne 0. We study also Confinement Physics using lattice QCD. In the maximally abelian (MA) gauge, the off-diagonal gluon amplitude is strongly suppressed, and then the off-diagonal gluon phase shows strong randomness, which leads to a large effective off-diagonal gluon mass, Moff1.2GeVM_{\rm off} \simeq 1.2 {\rm GeV}. Due to the large off-diagonal gluon mass in the MA gauge, infrared QCD is abelianized like nonabelian Higgs theories. In the MA gauge, there appears a macroscopic network of the monopole world-line covering the whole system. From the monopole current, we extract the dual gluon field BμB_\mu, and examine the longitudinal magnetic screening. We obtain mBm_B \simeq 0.5 GeV in the infrared region, which indicates the dual Higgs mechanism by monopole condensation. From infrared abelian dominance and infrared monopole condensation, low-energy QCD in the MA gauge is described with the dual Ginzburg-Landau (DGL) theory.

Keywords

Cite

@article{arxiv.hep-ph/0407123,
  title  = {Hadron Physics and Confinement Physics in Lattice QCD},
  author = {H. Suganuma and K. Amemiya and H. Ichie and N. Ishii and H. Matsufuru and N. Nakajima and Y. Nemoto and M. Oka and T. T. Takahashi},
  journal= {arXiv preprint arXiv:hep-ph/0407123},
  year   = {2009}
}

Comments

Invited talk given at International Symposium on Hadrons and Nuclei, Seoul, Korea, 20-22 Feb 2001

R2 v1 2026-07-22T13:55:55.538Z