English

Symmetry Spans and Enforced Gaplessness

Strongly Correlated Electrons 2026-04-08 v2 High Energy Physics - Theory Mathematical Physics math.MP

Abstract

Anomaly matching for continuous symmetries has been the primary tool for establishing symmetry enforced gaplessness - the phenomenon where global symmetry alone forces a quantum system to be gapless in the infrared. We introduce a new mechanism based on symmetry spans: configurations in which a global symmetry E\mathcal{E} is simultaneously embedded into two larger symmetries, as DEC\mathcal{D}\hookleftarrow\mathcal{E}\hookrightarrow\mathcal{C}. Any gapped phase with the full symmetry must, upon restriction to E\mathcal{E}, arise as the restriction of both a gapped C\mathcal{C}-symmetric phase and a gapped D\mathcal{D}-symmetric phase. When no such compatible phase exists, gaplessness is enforced. This mechanism can operate with only discrete and non-anomalous continuous symmetries in the UV, both of which admit well-understood lattice realizations. We construct explicit symmetry spans enforcing gaplessness in 1+1 dimensions, exhibit their realization in conformal field theories, and provide lattice Hamiltonians with the relevant symmetry embeddings.

Keywords

Cite

@article{arxiv.2602.11696,
  title  = {Symmetry Spans and Enforced Gaplessness},
  author = {Takamasa Ando and Kantaro Ohmori},
  journal= {arXiv preprint arXiv:2602.11696},
  year   = {2026}
}

Comments

20 pages, 2 figures

R2 v1 2026-07-01T10:33:14.415Z