English

Symmetry Breaking in an Extended-O(2) Model

High Energy Physics - Lattice 2022-12-15 v1 Statistical Mechanics Computational Physics

Abstract

Motivated by attempts to quantum simulate lattice models with continuous Abelian symmetries using discrete approximations, we consider an extended-O(2) model that differs from the ordinary O(2) model by an explicit symmetry breaking term. Its coupling allows to smoothly interpolate between the O(2) model (zero coupling) and a qq-state clock model (infinite coupling). In the latter case, a qq-state clock model can also be defined for non-integer values of qq. Thus, such a limit can also be considered as an analytic continuation of an ordinary qq-state clock model to non-integer qq. The phase diagram of the extended-O(2) model in the infinite coupling limit was established in our previous work, where it was shown that for non-integer qq, there is a second-order phase transition at low temperature and a crossover at high temperature. In this work, we investigate the model at finite values of the coupling using Monte Carlo and tensor methods. The results may be relevant for configurable Rydberg-atom arrays.

Keywords

Cite

@article{arxiv.2212.06893,
  title  = {Symmetry Breaking in an Extended-O(2) Model},
  author = {Leon Hostetler and Ryo Sakai and Jin Zhang and Judah Unmuth-Yockey and Alexei Bazavov and Yannick Meurice},
  journal= {arXiv preprint arXiv:2212.06893},
  year   = {2022}
}

Comments

7 pages, 4 Figures; Talk given at the 39th International Symposium on Lattice Field theory (LATTICE2022) in Bonn, Germany; August 8-13 2022

R2 v1 2026-06-28T07:33:10.604Z