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The Axion Quality Problem: Global Symmetry Breaking and Wormholes

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arxiv 2009.03917 v3 pith:6P6D6KYS submitted 2020-09-08 hep-ph hep-th

classification hep-phhep-th
keywords globalwormholesgravityproblemsymmetrybreakingqualitystring
verification ladder T0 review T1 audit T2 compute T3 formal
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Continuous global symmetries are expected to be broken by gravity, which can lead to important phenomenological consequences. A prime example is the threat that this poses to the viability of the Peccei-Quinn solution to the strong CP problem. In this paper, we explore the impact of wormholes as a source of global symmetry breaking by gravity. We review the current status of wormholes and global symmetries and note that, surprisingly, the axion has a quality problem within non-perturbative Einstein gravity. Although these wormholes lead to a large breaking of global symmetries, we show that their effect is nonetheless relevant for the model building of gauge protected axions. We also find wormhole solutions within two scenarios: (i) an extended global symmetry group within Einstein gravity, and (ii) U(1) wormholes within the low-energy limit of an open String Theory. The former allows us to show that the concept of a global symmetry in General Relativity is somewhat ill-defined. The latter illustrates that for motivated values of the string coupling constant, axions appear to have a quality problem within the open String Theory we consider.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A High-Quality Axion from Exact SUSY Chiral Dynamics

    hep-ph 2025-08 conditional novelty 7.0 of 10

    A supersymmetric chiral gauge theory stabilized by anomaly-mediated supersymmetry breaking produces a composite QCD axion whose Peccei-Quinn symmetry is protected by a discrete gauge symmetry.

  2. First Constraint on Axion-Photon Coupling $g_{\gamma}$ from Neutron Star Observations

    hep-ph 2025-06 reject novelty 6.0 of 10

    The paper derives a first bound on the dimensionless axion-photon coupling gγ from pulsar polarization data, reporting |gγ|<0.93 at 1σ for axion masses below 10^-11 eV, via a neutron-star-induced axion field.

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