The Chiral Separation Effect from lattice QCD at the physical point
High Energy Physics - Lattice
2024-02-29 v2 High Energy Physics - Phenomenology
High Energy Physics - Theory
Nuclear Theory
Abstract
In this paper we study the Chiral Separation Effect by means of first-principles lattice QCD simulations. For the first time in the literature, we determine the continuum limit of the associated conductivity using 2+1 flavors of dynamical staggered quarks at physical masses. The results reveal a suppression of the conductivity in the confined phase and a gradual enhancement toward the perturbative value for high temperatures. In addition to our dynamical setup, we also investigate the impact of the quenched approximation on the conductivity, using both staggered and Wilson quarks. Finally, we highlight the relevance of employing conserved vector and anomalous axial currents in the lattice simulations.
Keywords
Cite
@article{arxiv.2312.02945,
title = {The Chiral Separation Effect from lattice QCD at the physical point},
author = {Bastian B. Brandt and Gergely Endrődi and Eduardo Garnacho-Velasco and Gergely Markó},
journal= {arXiv preprint arXiv:2312.02945},
year = {2024}
}
Comments
26 pages, 8 figures