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    Local symmetries and extensive ground-state degeneracy of a one-dimensional supersymmetric fermionic chain

    Shuyu Zhang (张舒予)1,2,*, Hiroki Sukeno (助野裕紀)1,2,†, Kazuki Ikeda (池田一毅)3,4,‡, and Tzu-Chieh Wei (魏子傑)1,2,§

    • *Contact author: zhang.s.y.phys@gmail.com
    • †Contact author: hiroki.sukeno@gmail.com
    • ‡Contact author: kazuki.ikeda@umb.edu
    • §Contact author: tzu-chieh.wei@stonybrook.edu

    Phys. Rev. B 111, 235151 – Published 30 June, 2025

    DOI: https://doi.org/10.1103/k9yd-k2k4

    Abstract

    We study a one-dimensional supersymmetric hard-core fermion model first proposed by Fendley, Schoutens, and de Boer [Phys. Rev. Lett. 90, 120402 (2003)]. We focus on the full Hilbert space instead of a restricted subspace. Exact diagonalization shows the degeneracy of zero-energy states scales exponentially with size of the system, with a recurrence relation between different system sizes. We solve the degeneracy problem by showing the ground states can be systematically constructed by inserting immobile walls of fermions into the chain. Mapping the counting problem to a combinatorial one and obtaining the exact generating function, we prove the recurrence relation on both open and periodic chains. We also provide an explicit mapping between ground states, giving a combinatorial explanation of the recurrence relation.

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