English

Winding theta and destructive interference of instantons

High Energy Physics - Theory 2023-09-11 v2 Strongly Correlated Electrons

Abstract

While the θ\theta dependence of field theories is 2π2\pi periodic, the ground-state wavefunctions at θ\theta and θ+2π\theta+2\pi often belong to different classes of symmetry-protected topological states. When this is the case, a continuous change of the θ\theta parameter can introduce an interface that supports a nontrivial field theory localized on the wall. We consider the 22d CPN1\mathbb{C}P^{N-1} sigma model as an example and construct a weak-coupling setup of this interface theory by considering the small S1S^1 compactification with nonzero winding θ\theta parameter and a suitable symmetry-twisted boundary condition. This system has NN classical vacua connected by fractional instantons, but the anomaly constraint tells us that the fractional-instanton amplitudes should vanish completely to have NN-fold degeneracy at the quantum level. We show how this happens in this purely bosonic system, uncovering that the integration over the zero modes annihilates the fractional instanton amplitudes, which is sharp contrast to what happens when the θ\theta angle is constant. Moreover, we provide another explanation of this selection rule by showing that the NN perturbative vacua acquire different charges under the global symmetry with the activation of the winding θ\theta angle. We also demonstrate a similar destructive interference between instanton effects in the CPN1\mathbb{C}P^{N-1} quantum mechanics with the Berry phase.

Keywords

Cite

@article{arxiv.2207.03008,
  title  = {Winding theta and destructive interference of instantons},
  author = {Mendel Nguyen and Yuya Tanizaki and Mithat Ünsal},
  journal= {arXiv preprint arXiv:2207.03008},
  year   = {2023}
}

Comments

35 pages, 3 figures. V2 minor edits

R2 v1 2026-06-24T12:16:38.862Z