Search for Dark Matter via Invisible Decays in ${}^{46}$Sc Nuclear Gamma Cascades with a CsI(Tl) Detector

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Sahoo, Sharada, Chen, Jing-han, Mirzakhani, Mahdi, Ramani, Harikrishnan, Mahapatra, Rupak, Rajendran, Surjeet
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915789868630016
author Sahoo, Sharada
Chen, Jing-han
Mirzakhani, Mahdi
Ramani, Harikrishnan
Mahapatra, Rupak
Rajendran, Surjeet
author_facet Sahoo, Sharada
Chen, Jing-han
Mirzakhani, Mahdi
Ramani, Harikrishnan
Mahapatra, Rupak
Rajendran, Surjeet
contents Dark matter remains one of the most compelling open problems in modern physics, motivating experimental searches for new light, weakly coupled particles beyond the Standard Model. Despite extensive efforts employing diverse detection strategies, large regions of parameter space remain unexplored. We report a high-statistics laboratory search for invisible decay modes in nuclear $γ$-ray cascades using approximately $100~\mathrm{kg}$ of CsI(Tl) scintillators operated at Texas A\&M University. The experiment employs a high-activity ${}^{46}$Sc radioactive source and a ``missing-$γ$'' technique, in which the absence of a photon from a well-identified cascade serves as a signature of new physics. Unlike appearance-disappearance experiments, this approach requires only a single photon conversion into a dark-sector particle, enabling sensitivity to significantly weaker couplings. The setup provides simultaneous sensitivity to a broad class of light dark-sector candidates, including axions and axion-like particles, dark scalars, and dark photons in the $0.1 - 1 \text{ MeV}$ mass region. Through careful control of detector containment, energy resolution, and environmental backgrounds, we excludes certain regions on the previously explored parameter space. With foreseeable improvements in detector volume and systematic uncertainty control, this technique has the potential to probe currently unexplored parameter space for axion-like particles and light dark scalars.
format Preprint
id arxiv_https___arxiv_org_abs_2510_23001
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Search for Dark Matter via Invisible Decays in ${}^{46}$Sc Nuclear Gamma Cascades with a CsI(Tl) Detector
Sahoo, Sharada
Chen, Jing-han
Mirzakhani, Mahdi
Ramani, Harikrishnan
Mahapatra, Rupak
Rajendran, Surjeet
Instrumentation and Detectors
Nuclear Experiment
Dark matter remains one of the most compelling open problems in modern physics, motivating experimental searches for new light, weakly coupled particles beyond the Standard Model. Despite extensive efforts employing diverse detection strategies, large regions of parameter space remain unexplored. We report a high-statistics laboratory search for invisible decay modes in nuclear $γ$-ray cascades using approximately $100~\mathrm{kg}$ of CsI(Tl) scintillators operated at Texas A\&M University. The experiment employs a high-activity ${}^{46}$Sc radioactive source and a ``missing-$γ$'' technique, in which the absence of a photon from a well-identified cascade serves as a signature of new physics. Unlike appearance-disappearance experiments, this approach requires only a single photon conversion into a dark-sector particle, enabling sensitivity to significantly weaker couplings. The setup provides simultaneous sensitivity to a broad class of light dark-sector candidates, including axions and axion-like particles, dark scalars, and dark photons in the $0.1 - 1 \text{ MeV}$ mass region. Through careful control of detector containment, energy resolution, and environmental backgrounds, we excludes certain regions on the previously explored parameter space. With foreseeable improvements in detector volume and systematic uncertainty control, this technique has the potential to probe currently unexplored parameter space for axion-like particles and light dark scalars.
title Search for Dark Matter via Invisible Decays in ${}^{46}$Sc Nuclear Gamma Cascades with a CsI(Tl) Detector
topic Instrumentation and Detectors
Nuclear Experiment
url https://arxiv.org/abs/2510.23001