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    Hidden quantum-classical correspondence in chaotic billiards revealed by mutual information

    Kyu-Won Park1,*, Soojoon Lee1,2,†, and Kabgyun Jeong3,2,‡

    • *Contact author: parkkw7777@gmail.com
    • †Contact author: level@khu.ac.kr
    • ‡Contact author: kgjeong6@snu.ac.kr

    Phys. Rev. E 112, 024209 – Published 13 August, 2025

    DOI: https://doi.org/10.1103/qpxx-csdj

    Abstract

    Avoided level crossings, commonly associated with quantum chaos, are typically interpreted as signatures of eigenstate hybridization and spatial delocalization, often viewed as ergodic spreading. We show that, contrary to this expectation, increasing chaos in quantum billiards enhances mutual information between conjugate phase space variables, revealing nontrivial correlations. Using an information-theoretic decomposition of eigenstate entropy, we demonstrate that spatial delocalization may coincide with increased mutual information between position and momentum. These correlations track classical invariant structures in phase space and persist beyond the semiclassical regime, suggesting a robust information-theoretic manifestation of quantum-classical correspondence.

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