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January 25, 2026Proceedings of the National Academy of Sciences0 citationsOpen Access

Symmetry-protected topological polarons

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KLKaifa LuoJLJon Lafuente-BartolomeFGFeliciano Giustino

Key Points

  • This research aims to understand the topological properties of polarons and their underlying symmetry principles.
  • Conducted a group-theoretic analysis to classify polar textures in time-reversal-invariant systems.
  • Performed first-principles calculations on representative materials.
  • Computed polaron topology fingerprints through Huang diffuse scattering experiments.
  • Identified four distinct classes of polar textures with integer topological charges.
  • Validated the classification through computational methods and material analysis.
  • Proposed experimental techniques for detecting polarons using ultrafast electron and X-ray scattering.

Abstract

Emergent quasiparticles in solids often exhibit unique topological properties as a result of the complex interplay between charge, orbital, spin, and lattice degrees of freedom. Among these quasiparticles, the polaron occupies a special place as the first known manifestation of the interaction between a fermion and a boson field. While polarons have been investigated for almost a century, whether these quasiparticles exhibit topological properties and why remain open questions. Here, we establish the universal symmetry principles governing the topology of polar textures in large polarons. Using a group-theoretic analysis, we identify four distinct classes of polar textures in time-reversal-invariant systems, and we show that they carry integer topological charges. We validate this classification by performing state-of-the-art first-principles calculations of materials representative of each class. For these materials, we compute the fingerprints of polaron topology in Huang diffuse scattering and propose ultrafast electron and X-ray scattering experiments to detect these quasiparticles.

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Cite This Study

Luo et al. (2026) studied this question.

synapsesocial.com/papers/6975b1cefeba4585c2d6d476https://doi.org/10.1073/pnas.2514647123
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