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◆ Physical review. D/Physical review. D.2025-11-12· Hilbert space

Generic Hilbert space fragmentation in Kogut-Susskind lattice gauge theories

Anthony N. Ciavarella, C. Bauer, Jad C. Halimeh

原始摘要(英文原文)· Original abstract
At the heart of quantum many-body physics lies the understanding of mechanisms that avoid quantum thermalization in an isolated system quenched far from equilibrium. A prominent example is Hilbert space fragmentation, which has recently emerged as an ergodicity-breaking mechanism in constrained spin models. Here, we show that Kogut-Susskind formulations of lattice gauge theories in $d+1\mathrm{D}$ ($d$ spatial and one temporal dimensions) give rise to Hilbert space fragmentation, and discuss possible implications for understanding continuum physics. Our findings not only prove that lattice gauge theories are a natural platform for Hilbert space fragmentation, they also serve as a guide to the conditions under which these models can be faithfully used to infer the thermalization properties of quantum chromodynamics.
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