English

Light Adjoint Quarks in the Instanton-Dyon Liquid Model IV

High Energy Physics - Phenomenology 2016-11-23 v1 High Energy Physics - Lattice High Energy Physics - Theory

Abstract

We discuss the instanton-dyon liquid model with NfN_f Majorana quark flavors in the adjoint representation of color SUc(2)SU_c(2) at finite temperature. We briefly recall the index theorem on S1×R3S^1\times R^3 for twisted adjoint fermions in a BPS dyon background of arbitrary holonomy, and use the ADHM construction to explicit the adjoint anti-periodic zero modes. We use these results to derive the partition function of an interacting instanton-dyon ensemble with NfN_f light and anti-periodic adjoint quarks. We develop the model in details by mapping the theory on a 3-dimensional quantum effective theory with adjoint quarks with manifest SU(Nf)×Z4NfSU(N_f)\times Z_{4N_f} symmetry. Using a mean-field analysis at weak coupling and strong screening, we show that center symmetry requires the spontaneous breaking of chiral symmetry, which is shown to only take place for Nf=1N_f=1. For a sufficiently dense liquid, we find that the ground state is center symmetric and breaks spontaneously flavor symmetry through SU(Nf)×Z4NfO(Nf)SU(N_f)\times Z_{4N_f}\rightarrow O(N_f). As the liquid dilutes with increasing temperature, center symmetry and chiral symmetry are restored. We present numerical and analytical estimates for the transition temperatures.

Keywords

Cite

@article{arxiv.1605.07584,
  title  = {Light Adjoint Quarks in the Instanton-Dyon Liquid Model IV},
  author = {Yizhuang Liu and Edward Shuryak and Ismail Zahed},
  journal= {arXiv preprint arXiv:1605.07584},
  year   = {2016}
}

Comments

22 pages, 6 figures