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    Strong Hilbert space fragmentation and fractons from subsystem and higher-form symmetries

    Charles Stahl1,*, Oliver Hart2,*, Alexey Khudorozhkov3, and Rahul Nandkishore2

    • *These authors contributed equally to this work.

    Phys. Rev. B 112, 104316 – Published 19 September, 2025

    DOI: https://doi.org/10.1103/gp2w-mlkk

    Abstract

    We introduce a route to Hilbert space fragmentation in high dimensions leveraging the group-word formalism. We show that taking strongly fragmented models in one dimension and “lifting” to higher dimensions using subsystem symmetries can yield strongly fragmented dynamics in higher dimensions, with subdimensional (e.g., lineonic) excitations. This provides a route to higher-dimensional strong fragmentation, and also a route to fractonic behavior. Meanwhile, lifting one-dimensional fragmented models to higher dimensions using higher-form symmetries yields models with topologically robust fragmentation. In three or more spatial dimensions, one can also “mix and match” subsystem and higher-form symmetries, leading to canonical fracton models such as X cube. We speculate that this approach could also yield a route to non-Abelian fractons. These constructions unify a number of phenomena that have been discussed in the literature, as well as furnishing models with unique properties.

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