Gravity and the Higgs boson mass

According to usual calculations, both in flat and curved spacetime, the mass m 2 of a scalar particle is quadratically sensitive to the ultimate scale of the theory, the UV physical cutoff Λ. Building on previous work [1–3], here we calculate the one-loop effective action Γ 1l for a scalar field on a spherical gravitational background, using the diffeomorphism invariant Fradkin-Vilkovisky path integral measure. This measure gives rise to an automatically dimensionless fluctuation determinant, that we calculate resorting to a numerical cut N on the number of eigenvalues. We show that the UV-sensitivity of the radiative correction δm 2 to m 2 depends crucially on the relation between N and the UV cutoff Λ. We find that if the transition from N to Λ is realized through the off-shell background radius, δm 2 presents the well-known quadratic sensitivity to Λ. If, instead, the transition is realized resorting to the on-shell radius that minimizes the classical action, the mass turns out to be only logarithmically sensitive to Λ.

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Publication Details

Journal
International Journal of Geometric Methods in Modern Physics
Published
2026-09-18
DOI
https://doi.org/10.1142/s0219887826400177
Primary Topic
Cosmology and Gravitation Theories
Type
article
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article

Gravity and the Higgs boson mass

Carlo Branchina, Filippo Contino, Vincenzo Branchina, Arcangelo Pernace et al.
International Journal of Geometric Methods in Modern Physics
Cosmology and Gravitation Theories
article

Gravity and the Higgs boson mass

Carlo Branchina, Filippo Contino, Vincenzo Branchina, Arcangelo Pernace, Riccardo Gandolfo
article en

Abstract

According to usual calculations, both in flat and curved spacetime, the mass m 2 of a scalar particle is quadratically sensitive to the ultimate scale of the theory, the UV physical cutoff Λ. Building on previous work [1–3], here we calculate the one-loop effective action Γ 1l for a scalar field on a spherical gravitational background, using the diffeomorphism invariant Fradkin-Vilkovisky path integral measure. This measure gives rise to an automatically dimensionless fluctuation determinant, that we calculate resorting to a numerical cut N on the number of eigenvalues. We show that the UV-sensitivity of the radiative correction δm 2 to m 2 depends crucially on the relation between N and the UV cutoff Λ. We find that if the transition from N to Λ is realized through the off-shell background radius, δm 2 presents the well-known quadratic sensitivity to Λ. If, instead, the transition is realized resorting to the on-shell radius that minimizes the classical action, the mass turns out to be only logarithmically sensitive to Λ.

International Journal of Geometric Methods in Modern Physics
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Cosmology and Gravitation Theories
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Gravity and the Higgs boson mass — Carlo Branchina, Filippo Contino, et al. · International Journal of Geometric Methods in Modern Physics (2026) | TGRS Research Map | TGRS