English

Phase structure of the twisted $SU(3)/U(1)^2$ flag sigma model on $\mathbb{R}\times S^1$

High Energy Physics - Theory 2019-02-19 v3

Abstract

We investigate the phase structure of the compactified 22-dimensional nonlinear SU(3)/U(1)2SU(3)/U(1)^2 flag sigma model with respect to two θ\theta-terms. Based on the circle compactification with the Z3{\mathbb Z}_{3}-twisted boundary condition, which preserves an 't Hooft anomaly of the original uncompactified theory, we perform the semiclassical analysis based on the dilute instanton gas approximation (DIGA). We clarify classical vacua of the theory and derive fractional instanton solutions connecting these vacua. The resulting phase structure based on DIGA exhibits the quantum phase transitions and triple degeneracy at special points in the (θ1,θ2)(\theta_1,\theta_2)-plane, which is consistent with the phase diagram obtained from the anomaly matching and global inconsistency conditions. This result indicates the adiabatic continuity between the flag sigma models on R2{\mathbb R}^{2} and R×S1{\mathbb R}\times S^{1} with small compactification radius. We further estimate contributions from instanton--anti-instanton configuration (bion) and show the existence of the imaginary ambiguity, which is expected to be cancelled by that of the perturbative Borel resummation.

Keywords

Cite

@article{arxiv.1812.02259,
  title  = {Phase structure of the twisted $SU(3)/U(1)^2$ flag sigma model on $\mathbb{R}\times S^1$},
  author = {Masaru Hongo and Tatsuhiro Misumi and Yuya Tanizaki},
  journal= {arXiv preprint arXiv:1812.02259},
  year   = {2019}
}

Comments

34 pages, 7 figures;(v2) refs added; (v3) some footnotes added, minor corrections