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    Chern Theorem and Topological Matter in Fast-Rotating Atomic Nuclei

    Mike Guidry1,* and Yang Sun2,†

    • *Contact author: guidry@utk.edu
    • †Contact author: sunyang@sjtu.edu.cn

    Phys. Rev. Lett. 136, 062502 – Published 12 February, 2026

    DOI: https://doi.org/10.1103/lzdm-ng2k

    Abstract

    The Chern theorem is applied to intrinsically deformed atomic nuclei, leading to states exhibiting topological quantization of the rotation-aligned component of angular momentum averaged over Hilbert space. These topologically quantized alignment (TQA) states can emerge when collective rotation breaks intrinsic-frame time reversal symmetry, and differ fundamentally from traditional nuclear states. They exhibit formal analogies with the integer quantum Hall effect, and are a first suggestion that topological matter with novel properties might exist in nuclei. We discuss experimental signatures and speculate that TQA bulk-boundary correspondence could lead to a nuclear Chern insulator, where a rotating nucleus has an insulating bulk and unidirectional charged and uncharged currents at its surface, with detectable consequences for the energy spectrum.

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