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Main Authors: Bertuzzo, Enrico, Csaki, Csaba, Huller, Fernanda
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2507.16888
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author Bertuzzo, Enrico
Csaki, Csaba
Huller, Fernanda
author_facet Bertuzzo, Enrico
Csaki, Csaba
Huller, Fernanda
contents We present a global fit to electroweak precision observables (EWPOs) in dark photon (DP) models containing both kinetic and mass mixing between the DP and the neutral gauge bosons of the Standard Model (SM). Such more general mixing can be the result of an extended scalar sector, which we specify in this paper. We calculate the tree-level contributions to EWPOs due to the mixing with the DP, as well as the leading loop corrections to the oblique parameters due to the extended Higgs sector. In the scalar sector, we find that ample regions of parameter space are still unconstrained by data. In the gauge sector, the excluded region depends strongly on the vacuum expectation values of the scalar fields: for moderate ratios, DP masses in the $(40\,\text{GeV}, 1\,\text{TeV})$ range are excluded; for larger ratios, the limits become indistinguishable from those for standard DPs.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16888
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Electroweak Precision Constraints on Dark Photon Models with Generalized Mixing
Bertuzzo, Enrico
Csaki, Csaba
Huller, Fernanda
High Energy Physics - Phenomenology
We present a global fit to electroweak precision observables (EWPOs) in dark photon (DP) models containing both kinetic and mass mixing between the DP and the neutral gauge bosons of the Standard Model (SM). Such more general mixing can be the result of an extended scalar sector, which we specify in this paper. We calculate the tree-level contributions to EWPOs due to the mixing with the DP, as well as the leading loop corrections to the oblique parameters due to the extended Higgs sector. In the scalar sector, we find that ample regions of parameter space are still unconstrained by data. In the gauge sector, the excluded region depends strongly on the vacuum expectation values of the scalar fields: for moderate ratios, DP masses in the $(40\,\text{GeV}, 1\,\text{TeV})$ range are excluded; for larger ratios, the limits become indistinguishable from those for standard DPs.
title Electroweak Precision Constraints on Dark Photon Models with Generalized Mixing
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2507.16888