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February 8, 2026Journal of High Energy Physics0 citationsOpen Access

Gauging ℤN symmetries of Narain CFTs

KAKeiichi AndoKKKohki KawabataTNTatsuma Nishioka

Key Points

  • The research aims to derive a spin selection rule for operators related to ZN symmetries in lattice conformal field theories.
  • Derived a spin selection rule for operators in a ZN charge-twisted sector of bosonic CFTs.
  • Formulated gauging procedures in lattice CFTs by modifying momentum lattices with a vector for non-anomalous ZN symmetry.
  • Expressed torus partition functions for orbifolded and parafermionized theories using weight enumerator polynomials.
  • Identified a spin selection rule governing operators in ZN charge-twisted sectors.
  • Explicitly formulated the gauging procedures for lattice CFTs.
  • Demonstrated the connection between error-correcting codes and self-dual bosonic CFTs under ZN orbifolding.

Abstract

A bstract We investigate the gauging of a ℤ N symmetry in lattice conformal field theories (CFTs), also known as Narain CFTs. For prime N , we derive a spin selection rule for operators in a ℤ N charge-twisted sector of a general bosonic CFT. Using this result, we formulate the gauging procedures in lattice CFTs as modifications of the momentum lattices by a lattice vector that specifies a non-anomalous ℤ N symmetry. Applying this formulation to code CFTs, i.e., Narain CFTs constructed from error-correcting codes, we express the torus partition functions of the orbifolded and parafermionized theories in terms of the weight enumerator polynomials of the underlying codes. As an application, we identify a class of codes that yield self-dual bosonic CFTs under the orbifolding by a ℤ N symmetry.

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Cite This Study

Ando et al. (2026) studied this question.

synapsesocial.com/papers/6988291e0fc35cd7a8849381https://doi.org/10.1007/jhep02(2026)058
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