Skip to main navigation Skip to search Skip to main content

The spectral density of the QCD dirac operator and patterns of chiral symmetry breaking

  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

We study the spectrum of the QCD Dirac operator for two colors with fermions in the fundamental representation and for two or more colors with adjoint fermions. For Nf flavors, the chiral flavor symmetry of these theories is spontaneously broken according to SU(2Nf) → Sp(2Nf) and SU(Nf) → O(Nf), respectively, rather than the symmetry breaking pattern SU(Nf) × SU(Nf) → SU(Nf) for QCD with three or more colors and fundamental fermions. In this paper we study the Dirac spectrum for the first two symmetry breaking patterns. Following previous work for the third case we find the Dirac spectrum in the domain λ ≪ ΛQCD by means of partially quenched chiral perturbation theory. In particular, this result allows us to calculate the slope of the Dirac spectrum at λ = 0. We also show that for λ ≪ 1/L2ΛQCD (with L the linear size of the system) the Dirac spectrum is given by a chiral Random Matrix Theory with the symmetries of the Dirac operator.

Original languageEnglish
Pages (from-to)259-282
Number of pages24
JournalNuclear Physics, Section B
Volume560
Issue number1-3
DOIs
StatePublished - Nov 1 1999

Keywords

  • Chiral random matrix theory
  • Microscopic spectral density
  • Partially quenched chiral perturbation theory
  • QCD dirac operator
  • Valence quark mass dependence

Fingerprint

Dive into the research topics of 'The spectral density of the QCD dirac operator and patterns of chiral symmetry breaking'. Together they form a unique fingerprint.

Cite this