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Main Authors: Li, Jiayu, Fan, Feng-Ren, Yao, Wang
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2601.15011
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author Li, Jiayu
Fan, Feng-Ren
Yao, Wang
author_facet Li, Jiayu
Fan, Feng-Ren
Yao, Wang
contents In continuous topological phase transitions (CTPTs), the low-energy physics is governed by gap-closing subspaces, where approximate "higher" symmetries, termed quasisymmetries, may emerge. Here, we introduce the notion of quasisymmetry enrichment of these transitions. Focusing on paradigmatic normal-to-Chern insulator transitions, we identify quasisymmetries in the gapless subspaces, which subdivide CTPTs of the same universality class according to quasisymmetry charges. Gapless criticalities with nontrivial charges exhibit regulated phenomena, including intrinsic correlations between charge and pseudospin currents and continuous generalized Hall conductivities governed by the generalized Středa formula, both conventionally exclusive to gapped phases. These features arise as quasisymmetry forbids certain matrix elements, rendering the generalized Berry curvature integrable. By establishing quasisymmetry as a fundamental classifying ingredient, our work adds a new dimension for understanding the rich landscape of quantum phase transitions.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15011
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Quasisymmetry Enriched Gapless Criticality at Chern Insulator Transitions
Li, Jiayu
Fan, Feng-Ren
Yao, Wang
Materials Science
In continuous topological phase transitions (CTPTs), the low-energy physics is governed by gap-closing subspaces, where approximate "higher" symmetries, termed quasisymmetries, may emerge. Here, we introduce the notion of quasisymmetry enrichment of these transitions. Focusing on paradigmatic normal-to-Chern insulator transitions, we identify quasisymmetries in the gapless subspaces, which subdivide CTPTs of the same universality class according to quasisymmetry charges. Gapless criticalities with nontrivial charges exhibit regulated phenomena, including intrinsic correlations between charge and pseudospin currents and continuous generalized Hall conductivities governed by the generalized Středa formula, both conventionally exclusive to gapped phases. These features arise as quasisymmetry forbids certain matrix elements, rendering the generalized Berry curvature integrable. By establishing quasisymmetry as a fundamental classifying ingredient, our work adds a new dimension for understanding the rich landscape of quantum phase transitions.
title Quasisymmetry Enriched Gapless Criticality at Chern Insulator Transitions
topic Materials Science
url https://arxiv.org/abs/2601.15011