English

The Chern-Simons Diffusion Rate in Improved Holographic QCD

High Energy Physics - Theory 2015-06-12 v2 High Energy Physics - Lattice High Energy Physics - Phenomenology

Abstract

In (3+1)-dimensional SU(Nc) Yang-Mills (YM) theory, the Chern-Simons diffusion rate, Gamma_{CS}, is determined by the zero-momentum, zero-frequency limit of the retarded two-point function of the CP-odd operator tr[F ^ F], with F the YM field strength. The Chern-Simons diffusion rate is a crucial ingredient for many CP-odd phenomena, including the chiral magnetic effect in the quark-gluon plasma. We compute Gamma_{CS} in the high-temperature, deconfined phase of Improved Holographic QCD, a refined holographic model for large-Nc YM theory. Our result for Gamma_{CS}/(sT), where s is entropy density and T is temperature, varies slowly at high T and increases monotonically as T approaches the transition temperature from above. We also study the retarded two-point function of tr[F ^ F] with non-zero frequency and momentum. Our results suggest that the CP-odd phenomena that may potentially occur in heavy ion collisions could be controlled by an excitation with energy on the order of the lightest axial glueball mass.

Keywords

Cite

@article{arxiv.1212.3894,
  title  = {The Chern-Simons Diffusion Rate in Improved Holographic QCD},
  author = {Umut Gursoy and Ioannis Iatrakis and Elias Kiritsis and Francesco Nitti and Andy O'Bannon},
  journal= {arXiv preprint arXiv:1212.3894},
  year   = {2015}
}

Comments

31 pages, 13 eps files in 11 figures; v2 added one footnote and two references, version published in JHEP

R2 v1 2026-06-21T22:55:25.226Z