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Anomaly Inflow for Subsystem Symmetries

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arxiv 2110.09529 v1 pith:QQR3AN54 submitted 2021-10-18 cond-mat.str-el hep-th

classification cond-mat.str-elhep-th
keywords symmetriessubsystemanomalybulkanomaliesglobalinflowsspt
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We study 't Hooft anomalies and the related anomaly inflow for subsystem global symmetries. These symmetries and anomalies arise in a number of exotic systems, including models with fracton order such as the X-cube model. As is the case for ordinary global symmetries, anomalies for subsystem symmetries can be canceled by anomaly inflow from a bulk theory in one higher dimension; the corresponding bulk is therefore a non-trivial subsystem symmetry protected topological (SSPT) phase. We demonstrate these phenomena in several examples with continuous and discrete subsystem global symmetries, as well as time-reversal symmetry. For each example we describe the boundary anomaly, and present classical continuum actions for the corresponding bulk SSPT phases, which describe the response of background gauge fields associated with the subsystem symmetries. Interestingly, we show that the anomaly does not uniquely specify the bulk SSPT phase. In general, the latter may also depend on how the symmetry and the associated foliation structure on the boundary are extended into the bulk.

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  1. Exotic massive fermionic systems with huge vacuum degeneracy at boundaries

    hep-th 2025-01 conditional novelty 6.0 of 10

    Adding a mass term to the ψ theory leaves a gapped bulk but generates a boundary flat band of Majorana zero modes, yielding ground state entropy proportional to the boundary area.

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