English

New universality classes of the non-Hermitian Dirac operator in QCD-like theories

High Energy Physics - Theory 2021-08-04 v1 Statistical Mechanics High Energy Physics - Lattice Chaotic Dynamics

Abstract

In non-Hermitian random matrix theory there are three universality classes for local spectral correlations: the Ginibre class and the nonstandard classes AI\mathrm{AI}^\dagger and AII\mathrm{AII}^\dagger. We show that the continuum Dirac operator in two-color QCD coupled to a chiral U(1)\mathrm{U}(1) gauge field or an imaginary chiral chemical potential falls in class AI\mathrm{AI}^\dagger (AII\mathrm{AII}^\dagger) for fermions in pseudoreal (real) representations of SU(2)\mathrm{SU}(2). We introduce the corresponding chiral random matrix theories and verify our predictions in lattice simulations with staggered fermions, for which the correspondence between representation and universality class is reversed. Specifically, we compute the complex eigenvalue spacing ratios introduced recently. We also derive novel spectral sum rules.

Keywords

Cite

@article{arxiv.2104.05846,
  title  = {New universality classes of the non-Hermitian Dirac operator in QCD-like theories},
  author = {Takuya Kanazawa and Tilo Wettig},
  journal= {arXiv preprint arXiv:2104.05846},
  year   = {2021}
}

Comments

11 pages, 9 figures