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May 1, 2026Physical Review Letters1 citationsOpen Access

When can higher-form symmetries be made on-site

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AAnonymousWesleyan University

Key Points

  • The aim is to clarify how higher-form symmetries can be made onsite, determining the relationship between onsiteability and anomaly conditions.
  • Proposed an equivalence between onsiteability and the possibility of higher gauging for higher-form symmetries.
  • Analyzed the 't Hooft anomaly conditions to determine onsiteability for finite 1-form symmetries in (2+1)D.
  • Derived necessary conditions for onsiteability in generic dimensions using lattice 't Hooft anomalies.
  • Showed that onsiteable finite 1-form symmetry in (2+1)D satisfies a specific algebraic condition related to its 't Hooft anomaly.
  • Demonstrated that onsiteable 1-form symmetry can be expressed using transversal Pauli operators by ancillas and circuit conjugation.
  • Conjectured a general equivalence between onsiteability and the possibility of higher gauging on lattices.

Abstract

An internal symmetry in a lattice model is said to be onsiteable if it can be disentangled into an onsite action by introducing ancillas and conjugating with a finite-depth circuit. A standard lore holds that onsiteability is equivalent to being anomaly-free, which is indeed valid for finite 0-form symmetries in (1+1) D. However, for higher-form symmetries, these notions become inequivalent: a symmetry may be onsite while still anomalous. In this work, we clarify the conditions for onsiteability of higher-form symmetries by proposing an equivalence between onsiteability and the possibility of higher gauging. For a finite 1-form symmetry in (2+1) D, we show that the symmetry is onsiteable if and only if its 't Hooft anomaly satisfies a specific algebraic condition that ensures the symmetry can be 1-gauged. We further demonstrate that onsiteable 1-form symmetry in (2+1) D can always be brought into transversal Pauli operators by ancillas and circuit conjugation. In generic dimensions, we derive necessary conditions for onsiteability using lattice 't Hooft anomaly of higher-form symmetry, and conjecture a general equivalence between onsiteability and possibility of higher gauging on lattices.

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Cite This Study

Anonymous (2026) studied this question.

synapsesocial.com/papers/69f44223967e944ac5565df7https://doi.org/10.1103/59dq-sl3m
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