Direct detection of solar chameleons with electron recoil data from XENONnT

Fuente: arXiv
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Main Authors: Yuan, Guan-Wen, Davis, Anne-Christine, Giannotti, Maurizio, Vagnozzi, Sunny, Visinelli, Luca, Vogel, Julia K.
Format: Preprint
Published: 2025
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author Yuan, Guan-Wen
Davis, Anne-Christine
Giannotti, Maurizio
Vagnozzi, Sunny
Visinelli, Luca
Vogel, Julia K.
author_facet Yuan, Guan-Wen
Davis, Anne-Christine
Giannotti, Maurizio
Vagnozzi, Sunny
Visinelli, Luca
Vogel, Julia K.
contents We reassess prospects for direct detection of solar chameleons, in light of recent progress in modeling their production, and the availability of new XENONnT data. We show that the contribution from Primakoff production in the electric fields of electrons and ions dominates the electron recoil event rate, which is enhanced compared to earlier estimates based on magnetic conversion in the tachocline alone. We argue that the signal is governed by the effective coupling $β_{\text{eff}} \equiv β_γM_e^{-4}$, which encodes the combined effects of production and detection, where $β_γ$ and $M_e$ are the chameleon-photon (conformal) coupling and chameleon-electron disformal coupling scale, respectively. Setting the height of the chameleon potential to the dark energy (DE) scale $Λ\simeq 2.4\,{\text{meV}}$, we show that XENONnT electron recoil data set the upper limit $\log_{10}β_{\text{eff}}<-6.9$. This limit is independent of the conformal matter coupling $β_m$ and index $n$, and applies to the whole class of inverse power-law chameleons, well beyond the $n=1$ case usually studied. We comment on how future multi-target experiments and lower-threshold analyses could distinguish solar chameleons from other light (pseudo)scalar particles such as axions. Our work demonstrates that existing dark matter direct detection experiments can probe regions of parameter space relevant to screened DE models, providing complementary tests to astrophysical and fifth-force searches at no additional experimental cost.
format Preprint
id arxiv_https___arxiv_org_abs_2511_01655
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Direct detection of solar chameleons with electron recoil data from XENONnT
Yuan, Guan-Wen
Davis, Anne-Christine
Giannotti, Maurizio
Vagnozzi, Sunny
Visinelli, Luca
Vogel, Julia K.
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
High Energy Physics - Experiment
We reassess prospects for direct detection of solar chameleons, in light of recent progress in modeling their production, and the availability of new XENONnT data. We show that the contribution from Primakoff production in the electric fields of electrons and ions dominates the electron recoil event rate, which is enhanced compared to earlier estimates based on magnetic conversion in the tachocline alone. We argue that the signal is governed by the effective coupling $β_{\text{eff}} \equiv β_γM_e^{-4}$, which encodes the combined effects of production and detection, where $β_γ$ and $M_e$ are the chameleon-photon (conformal) coupling and chameleon-electron disformal coupling scale, respectively. Setting the height of the chameleon potential to the dark energy (DE) scale $Λ\simeq 2.4\,{\text{meV}}$, we show that XENONnT electron recoil data set the upper limit $\log_{10}β_{\text{eff}}<-6.9$. This limit is independent of the conformal matter coupling $β_m$ and index $n$, and applies to the whole class of inverse power-law chameleons, well beyond the $n=1$ case usually studied. We comment on how future multi-target experiments and lower-threshold analyses could distinguish solar chameleons from other light (pseudo)scalar particles such as axions. Our work demonstrates that existing dark matter direct detection experiments can probe regions of parameter space relevant to screened DE models, providing complementary tests to astrophysical and fifth-force searches at no additional experimental cost.
title Direct detection of solar chameleons with electron recoil data from XENONnT
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
High Energy Physics - Experiment
url https://arxiv.org/abs/2511.01655