English

Topological insulators and the QCD vacuum: the theta parameter as a Berry phase

High Energy Physics - Theory 2014-06-18 v1

Abstract

There is considerable evidence, based on large NcN_c chiral dynamics, holographic QCD, and Monte Carlo studies, that the QCD vacuum is permeated by discrete quasivacua separated by domain walls across which the local value of the topological θ\theta parameter jumps by ±2π\pm2\pi. In the 2-dimensional CPN1CP^{N-1} sigma model, a pointlike charge is a domain wall, and θ\theta describes the background electric flux and the polarization of charged pairs in the vacuum. We show that the screening process, and the role of θ\theta as an order parameter describing electric polarization, are naturally formulated in terms of Bloch wave eigenstates of the Dirac Hamiltonian in the background gauge field. This formulation is similar to the Berry phase description of electric polarization and quantized charge transport in topological insulators. The Bloch waves are quasiperiodic superpositions of localized Dirac zero modes. They define a Berry connection around the Brillouin zone of the zero mode band which describes the local polarization of vacuum pairs, analogous to its role in topological insulator theory. In 4D Yang-Mills theory, the θ\theta domain walls are 2+1-dimensional Chern-Simons membranes. The interpretation of the θ\theta parameter as a Berry phase describing the local polarization of brane-antibrane pairs follows from the descent equations of 4D Yang-Mills theory.

Keywords

Cite

@article{arxiv.1311.7104,
  title  = {Topological insulators and the QCD vacuum: the theta parameter as a Berry phase},
  author = {H. B. Thacker},
  journal= {arXiv preprint arXiv:1311.7104},
  year   = {2014}
}

Comments

18 pages, 2 figures