English

Delineating chiral separation effect in two-color dense QCD

High Energy Physics - Phenomenology 2021-09-03 v2 High Energy Physics - Lattice Nuclear Theory

Abstract

We study the chiral separation effect (CSE) in two-color and two-flavor QCD (QC2_2D) to delineate quasiparticle pictures in dense matter from low to high temperatures. Both massless and massive quarks are discussed. We particularly focus on the high density domain where diquarks form a color singlet condensate with the electric charge 1/31/3. The condensate breaks baryon number and U(1)AU(1)_A axial symmetry, and induces the electromagnetic Meissner effects. Within a quark quasiparticle picture, we compute the chiral separation conductivity at one-loop. We have checked that Nambu-Goldstone modes, which should appear in the improved vertices as required by the Ward-Takahashi identities, do not contribute to the chiral separation conductivity due to their longitudinal natures. In the static limit, the destructive interferences in the particle-hole channel, as in usual Meissner effects, suppress the conductivity (in chiral limit, to 1/31/3 of the normal phase's). This locally breaks the universality of the CSE coefficients, provided quasiparticle pictures are valid in the bulk matter.

Keywords

Cite

@article{arxiv.2105.10538,
  title  = {Delineating chiral separation effect in two-color dense QCD},
  author = {Daiki Suenaga and Toru Kojo},
  journal= {arXiv preprint arXiv:2105.10538},
  year   = {2021}
}

Comments

12 pages, 6 figures

R2 v1 2026-06-24T02:21:23.956Z