English

C-P-T anomaly matching in bosonic quantum field theory and spin chains

High Energy Physics - Theory 2018-04-10 v2 Strongly Correlated Electrons High Energy Physics - Lattice

Abstract

We consider the O(3)O(3) nonlinear sigma model with the θ\theta-term and its linear counterpart in 1+1D. The model has discrete time-reflection and space-reflection symmetries at any θ\theta, and enjoys the periodicity in θθ+2π\theta\rightarrow \theta+2\pi. At θ=0,π\theta=0,\pi it also has a charge-conjugation CC-symmetry. Gauging the discrete space-time reflection symmetries is interpreted as putting the theory on the nonorientable RP2\mathbb RP^2 manifold, after which the 2π2\pi periodicity of θ\theta and the CC symmetry at θ=π\theta=\pi are lost. We interpret this observation as a mixed 't Hooft anomaly among charge-conjugation CC, parity PP, and time-reversal TT symmetries when θ=π\theta=\pi. Anomaly matching implies that in this case the ground state cannot be trivially gapped, as long as CC, PP and TT 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 SO(3)SO(3)-spin symmetry), requiring that the ground state is never trivially gapped, even if SO(3)SO(3) spin symmetry is explicitly and completely broken. We also consider generalizations to CPN1\mathbb{C}P^{N-1} models and show that the CC-PP-TT anomaly exists for even NN.

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