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    Rényi-like entanglement probe of the chiral central charge

    Julian Gass and Michael Levin

    Phys. Rev. B 113, 235136 – Published 22 June, 2026

    DOI: https://doi.org/10.1103/w38m-myp7

    Abstract

    We propose a ground-state entanglement probe for gapped, two-dimensional quantum many-body systems that involves taking powers of reduced density matrices in a particular geometric configuration. This quantity, which we denote by ωα,β, is parameterized by two positive real numbers, αandβ, and can be seen as a “Rényi-like” generalization of the modular commutator—another entanglement probe proposed as a way to compute the chiral central charge from a bulk wave function. We obtain analytic expressions for ωα,β for gapped ground states of noninteracting-fermion Hamiltonians as well as ground states of string-net models. In both cases, we find that ωα,β takes a universal value related to the chiral central charge. For integer values of α and β, our quantity ωα,β can be expressed as an expectation value of permutation operators acting on an appropriate replica system, providing a natural route to measuring ωα,β in numerical simulations and experiments.

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