Published October 2019 | Version v1
Journal article

Random matrix approach to three-dimensional QCD with a Chern-Simons term

  • 1. Hitachi, Ltd., Research and Development Group (Japan)
  • 2. University of Melbourne, School of Mathematics and Statistics (Australia)
  • 3. Stony Brook University, Department of Physics and Astronomy (United States)

Description

We propose a random matrix theory for QCD in three dimensions with a Chern-Simons term at level k which spontaneously breaks the flavor symmetry according to U(2Nf) U(Nf + k)×U(Nf− k). This random matrix model is obtained by adding a complex part to the action for the k = 0 random matrix model. We derive the pattern of spontaneous symmetry breaking from the analytical solution of the model. Additionally, we obtain explicit analytical results for the spectral density and the spectral correlation func- tions for the Dirac operator at finite matrix dimension, that become complex. In the micro- scopic domain where the matrix size tends to infinity, they are expected to be universal, and give an exact analytical prediction to the spectral properties of the Dirac operator in the presence of a Chern-Simons term. Here, we calculate the microscopic spectral density. It shows exponentially large (complex) oscillations which cancel the phase of the k = 0 theory.

Additional details

Identifiers

Publishing Information

Journal Title
Journal of High Energy Physics (Online)
Journal Volume
2019
Journal Issue
10
Journal Page Range
p. 1-41
ISSN
1029-8479

Optional Information

Copyright
Copyright (c) 2019 The Author(s)