Goldstone modes and photonization for higher form symmetries
Abstract
We discuss generalized global symmetries and their breaking. We extend Goldstone's theorem to higher form symmetries by showing that a perimeter law for an extended -dimensional defect operator charged under a continuous -form generalized global symmetry necessarily results in a gapless mode in the spectrum. We also show that a -form symmetry in a conformal theory in dimensions has a free realization. In four dimensions this means any 1-form symmetry in a can be realized by free Maxwell electrodynamics, i.e. the current can be photonized. The photonized theory has infinitely many conserved 0-form charges that are constructed by integrating the symmetry currents against suitable 1-forms. We study these charges by developing a twistor-based formalism that is a 4d analogue of the usual holomorphic complex analysis familiar in . The charges are shown to obey an algebra with central extension, which is an analogue of the 2d Abelian Kac-Moody algebra for higher form symmetries.
Cite
@article{arxiv.1802.09512,
title = {Goldstone modes and photonization for higher form symmetries},
author = {Diego M. Hofman and Nabil Iqbal},
journal= {arXiv preprint arXiv:1802.09512},
year = {2020}
}
Comments
7 pages, 1 figure. v2. Added reference and minor clarifications. v3. Acknowledgment added