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    Bipartite Entanglement and Surface Criticality: The Extra Contribution of the Nonordinary Edge in Entanglement

    Yanzhang Zhu1,2,3, Zenan Liu2,3, Zhe Wang4,2,3,*, Yan-Cheng Wang4,5,†, and Zheng Yan2,3,‡

    • 1State Key Laboratory of Surface Physics and Department of Physics, Fudan University, Shanghai 200433, China
    • 2Department of Physics, School of Science and Research Center for Industries of the Future, Westlake University, Hangzhou 310030, China
    • 3Institute of Natural Sciences, Westlake Institute for Advanced Study, Hangzhou 310024, China
    • 4Hangzhou International Innovation Institute, Beihang University, Hangzhou 311115, China
    • 5Tianmushan Laboratory, Hangzhou 311115, China

    • *Contact author: wangzhe90@westlake.edu.cn
    • †Contact author: ycwangphys@buaa.edu.cn
    • ‡Contact author: zhengyan@westlake.edu.cn

    Phys. Rev. Lett. 136, 046501 – Published 27 January, 2026

    DOI: https://doi.org/10.1103/tkx5-kzhh

    Abstract

    Recent works on the scaling behaviors of entanglement entropy at the SO(5) deconfined quantum critical point (DQCP) sparked a huge controversy. Different bipartitions gave out totally different conclusions for whether the DQCP is consistent with a unitary conformal field theory. In this Letter, we connect two previously disconnected fields—the many-body entanglement and the surface criticality—to reveal the behaviors of entanglement entropy in various bipartite scenarios, and point out that only the ordinary bipartition purely reflects the criticality of the bulk; otherwise, the extra gapless edge mode will also contribute to the entanglement. We have demonstrated that the correspondence between the entanglement spectrum and the edge energy spectrum still approximately persists even at a bulk-gapless point, thereby influencing the behavior of entanglement entropy. Our results establish that boundary conditions induced by the cut are decisive for entanglement-based probes and provide practical protocols to separate bulk from boundary contributions.

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