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March 3, 2026Journal of High Energy Physics0 citationsOpen Access

Where non-invertible symmetries end: twist defects for electromagnetic duality

SSShu-Heng ShaoSZSiwei Zhong

Key Points

  • Electric and magnetic fields are exchanged around novel conformal twist defects, enhancing our understanding of electromagnetic duality.
  • The operator spectrum of the twist defect was determined by solving classical electromagnetic wave equations under a twisted boundary condition.
  • Analysis using defect conformal field theory reveals that correlation functions factor into two distinct sectors, raising implications for operator dynamics.
  • A defect 't Hooft anomaly is discussed, highlighting its connection with chiral O(2) symmetry and its dynamical consequences.

Abstract

A bstract We study novel conformal twist defects in 4d Maxwell theory, around which electric and magnetic fields are exchanged. These are codimension-2 defects living at the end of topological defects for certain non-invertible global symmetries. We determine the operator spectrum of the twist defect by solving classical electromagnetic wave equations subject to a twisted boundary condition. Using techniques from defect CFT, we show that correlation functions of these defect operators factorize into two sectors: a universal generalized free-field sector, and a chiral current sector analogous to edge modes in Chern-Simons theory. In a similar setup, we also revisit the twist fields attached to non-invertible line defects in the 2d compact boson CFT. We discuss a defect ’t Hooft anomaly involving a chiral O (2) symmetry, highlighting its dynamical implications.

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Cite This Study

Shao et al. (2026) studied this question.

synapsesocial.com/papers/69a75d2dc6e9836116a26c52https://doi.org/10.1007/jhep01(2026)118
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