arXiv Analytics

Sign in

arXiv:1210.7873 [hep-lat]AbstractReferencesReviewsResources

Dirac-mode expansion for confinement and chiral symmetry breaking

H. Suganuma, S. Gongyo, T. Iritani

Published 2012-10-30Version 1

We develop a manifestly gauge-covariant expansion and projection using the eigen-mode of the QCD Dirac operator. Applying this method to the Wilson loop and the Polyakov loop, we perform a direct analysis of the correlation between confinement and chiral symmetry breaking in SU(3) lattice QCD calculation on 6^4 at beta=5.6 at the quenched level. Notably, the Wilson loop is found to obey the area law, and the slope parameter corresponding to the string tension or the confinement force is almost unchanged, even after removing the low-lying Dirac modes, which are responsible to chiral symmetry breaking. We find also that the Polyakov loop remains to be almost zero even without the low-lying Dirac modes, which indicates the Z_3-unbroken confinement phase. These results indicate that one-to-one correspondence does not hold between confinement and chiral symmetry breaking in QCD.

Comments: 7 pages, 6 figures, Talk given at Conference: Lattice 2012
Journal: PoS LATTICE2012 (2012) 217
Categories: hep-lat, hep-ph, hep-th
Related articles: Most relevant | Search more
arXiv:1202.4130 [hep-lat] (Published 2012-02-19, updated 2012-09-01)
Gauge-Invariant Formalism with a Dirac-mode Expansion for Confinement and Chiral Symmetry Breaking
arXiv:1301.2879 [hep-lat] (Published 2013-01-14)
Lattice QCD study of confinement and chiral symmetry breaking with Dirac-mode expansion
arXiv:1401.4434 [hep-lat] (Published 2014-01-17)
Analytical Relation between Quark Confinement and Chiral Symmetry Breaking in QCD