English

Symmetry Transmutation and Anomaly Matching

High Energy Physics - Theory 2025-11-11 v2 Strongly Correlated Electrons

Abstract

We explore a situation where a global symmetry of the ultraviolet (UV) theory does not act faithfully on the local infrared (IR) degrees of freedom, but instead acts effectively as a higher-form symmetry. We refer to this phenomenon as symmetry transmutation, where the UV symmetry is "transmuted" into a higher-form symmetry in the IR. Notably, unlike emergent (accidental) symmetries, which are approximate, these symmetries are exact. We illustrate the ubiquity of this phenomenon in various continuum and lattice systems and provide examples where the 't Hooft anomalies of the UV symmetry are matched by those of the new higher-form symmetry in the IR. We also show that in certain phases and for certain energies, the UV baryon-number symmetry of one-flavor QCD is transmuted into a discrete one-form global symmetry. Finally, we compare our symmetry transmutation to the well-known phenomenon of symmetry fractionalization.

Keywords

Cite

@article{arxiv.2505.08618,
  title  = {Symmetry Transmutation and Anomaly Matching},
  author = {Nathan Seiberg and Sahand Seifnashri},
  journal= {arXiv preprint arXiv:2505.08618},
  year   = {2025}
}

Comments

62 pages, 7 figures, 1 table; v2: minor changes

R2 v1 2026-06-28T23:31:37.281Z