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    Quasilocal frustration-free free fermions

    Shunsuke Sengoku1, Hoi Chun Po2,3, and Haruki Watanabe1,*

    • *Contact author: hwatanabe@g.ecc.u-tokyo.ac.jp

    Phys. Rev. B 112, 115104 – Published 2 September, 2025

    DOI: https://doi.org/10.1103/794x-jdn7

    Abstract

    Recent studies have revealed that frustration-free models, expressed as sums of finite-range interactions or hoppings, exhibit several properties markedly different from those of frustrated models. In this work, we demonstrate that, by relaxing the finite-range condition to allow for exponentially decaying hoppings, one can build gapped frustration-free systems that realize Chern insulators as well as quasidegenerate ground states with finite-size splittings. Moreover, by permitting power-law decaying hoppings, we also construct a gapless band metal whose finite-size gap scales inversely with the system size L. These findings serve as an important step toward clarifying the general properties of frustration-free systems and those represented by tensor network states.

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