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February 16, 2026Nature Communications0 citationsOpen Access

Topological protection by local support symmetry and destructive interference

JRJun-Won RhimJSJaeuk SeoSMSeongjun Mo

Key Points

  • The research explores how local support symmetries can protect topological features in systems even amidst symmetry-breaking conditions.
  • Derivation of conditions for protection of topological features in insulating and metallic phases.
  • Use of tight-binding models to demonstrate the phenomena.
  • Identification of a realistic material (fluorinated biphenylene network) that exhibits the discussed effects.
  • Establishment of a framework for understanding topological protections via local support symmetries.
  • Demonstration of band crossings and topological bands that are protected by local support symmetry.
  • Identification of a local support C 2 symmetry in a real material that maintains a band crossing.

Abstract

Abstract Conventionally, symmetry-protected topological phases and band crossings are protected by global symmetries acting on the entire system. Here, we show that symmetries preserved only on a partial region of a system, termed local support symmetries, can protect topological features of the full system, even in the presence of symmetry-breaking couplings. We establish a unified framework by deriving explicit conditions for such protection in both insulating and metallic phases and show that destructive interference of Bloch wave functions plays a key role. Using representative tight-binding models, we demonstrate band crossings and topological bands protected by local support crystalline and time-reversal symmetries, and further present a realistic material realization in a fluorinated biphenylene network, where a band crossing is protected by a local support C 2 symmetry.

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Cite This Study

Rhim et al. (2026) studied this question.

synapsesocial.com/papers/6992b4919b75e639e9b09809https://doi.org/10.1038/s41467-026-69613-8
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