C-P-T anomaly matching in bosonic quantum field theory and spin chains
Abstract
We consider the nonlinear sigma model with the -term and its linear counterpart in 1+1D. The model has discrete time-reflection and space-reflection symmetries at any , and enjoys the periodicity in . At it also has a charge-conjugation -symmetry. Gauging the discrete space-time reflection symmetries is interpreted as putting the theory on the nonorientable manifold, after which the periodicity of and the symmetry at are lost. We interpret this observation as a mixed 't Hooft anomaly among charge-conjugation , parity , and time-reversal symmetries when . Anomaly matching implies that in this case the ground state cannot be trivially gapped, as long as , and are all good symmetries of the theory. We make several consistency checks with various semi-classical regimes, and with the exactly solvable XYZ model. We interpret this anomaly as an anomaly of the corresponding spin-half chains with translational symmetry, parity and time reversal (but not involving the -spin symmetry), requiring that the ground state is never trivially gapped, even if spin symmetry is explicitly and completely broken. We also consider generalizations to models and show that the -- anomaly exists for even .
Keywords
Cite
@article{arxiv.1802.02153,
title = {C-P-T anomaly matching in bosonic quantum field theory and spin chains},
author = {Tin Sulejmanpasic and Yuya Tanizaki},
journal= {arXiv preprint arXiv:1802.02153},
year = {2018}
}
Comments
14 pages, 5 figures; (v2) title changed, refs added, some appendices added