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October 1, 2025Physical Review Letters3 citationsOpen Access

Dark-Matter–Electron Detectors for Dark-Matter–Nucleon Interactions

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SGSinéad M. GriffinGHGuy Daniel HadasYHYonit Hochberg

Key Points

  • New detector concepts enhance sensitivity to dark-matter–electron interactions and nucleon interactions.
  • Using existing superconducting detector data, new limits were placed on interactions with MeV-scale dark matter.
  • Advancements in technology for electronic interactions extend sensitivity for nuclear interactions as well.
  • This approach could effectively double the scientific output of future low-threshold detector experiments.

Abstract

In a seminal paper now a decade old, it was shown that dark-matter detectors geared at probing interactions with nucleons could also be used to probe dark-matter interactions with electrons. In this Letter, we show that new detector concepts designed to probe dark-matter–electron interactions at low masses can similarly be used to probe new parameter space for dark-matter–nucleon interactions. We demonstrate the power of this approach by using existing data from superconducting detectors to place new limits on the interactions of nuclei with MeV-scale dark matter. Further, we show that advances in detector technology that have been anticipated for electronic interactions will automatically extend sensitivity deep into uncharted territory for nuclear interactions. This doubles the effective science output of future low-threshold experiments.

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Cite This Study

Griffin et al. (2025) studied this question.

synapsesocial.com/papers/68dd89e6fe798ba2fc498161https://doi.org/10.1103/6qqv-rl7q
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