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Topological violation of global symmetries in quantum gravity

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arxiv 2011.11868 v3 pith:OKVMBU66 submitted 2020-11-24 hep-th gr-qchep-ph

classification hep-thgr-qchep-ph
keywords topologicalglobalsymmetrybranecompactificationconservationfieldform
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abstract

We discuss a topological reason why global symmetries are not conserved in quantum gravity, at least when the symmetry comes from compactification of a higher form symmetry. The mechanism is purely topological and does not require any explicit breaking term in the UV Lagrangian. Local current conservation does not imply global charge conservation in a sum over geometries in the path integral. We explicitly consider the shift symmetry of an axion-like field which originates from the compactification of a $p$-form gauge field. Our topological construction is motivated by the brane/black-brane correspondence, brane instantons, and an idea that virtual black branes of a simple kind may be realized by surgery on spacetime manifolds.

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  1. Revisiting wormhole-induced global symmetry breaking

    hep-th 2026-07 conditional novelty 6.5 of 10

    Ensemble averaging over wormhole α-parameters is dominated by the symmetric point α=0 for spontaneously broken U(1) p-form symmetries, so standard PQ models evade the wormhole-induced axion quality problem.

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