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Naturalness and UV sensitivity in Kaluza-Klein theories

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arxiv 2304.08040 v2 pith:QDHMOKXD submitted 2023-04-17 hep-th hep-ph

Naturalness and UV sensitivity in Kaluza-Klein theories

classification hep-th hep-ph
keywords higgsmodelsparadigmscherk-schwarzsensitivitytheoriesuv-insensitiveaccording
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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More than twenty years ago a paradigm emerged according to which a UV-insensitive Higgs mass $m_H$ and (more generally) a UV-insensitive Higgs effective potential $V_{1l}(\phi)$ are obtained from higher-dimensional theories with compact extra dimensions and Scherk-Schwarz supersymmetry breaking. Since then, these ideas have been applied to different models of phenomenological interest, including recent applications to the dark energy problem. A thorough analysis of the framework on which such a paradigm is based allows us to show that a source of strong UV sensitivity for $m_H$ and $V_{1l}(\phi)$, intimately connected to the non-trivial topology of these models' spacetime, was missed. The usual picture of the Scherk-Schwarz mechanism and its physical consequences need to be seriously reconsidered.

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  1. Kaluza-Klein tower thresholds and scheme dependence of the species scale

    hep-th 2026-07 accept novelty 6.5

    Leading KK-tower local corrections to four-derivative gravity are regulator-dependent EFT matching data, while log N terms are universal within proper-time cutoffs, so species-scale definitions match only parametrically.