New constraints on cosmic-ray boosted sub-Gev dark matter via light mediators

Abstract Traditional direct detection experiments lack the sensitivity to probe the sub-GeV dark matter(DM), primarily due to the low energy of the expected nuclear recoils. In this work, we investigate cosmic-ray (CR) upscattering as a mechanism to accelerate DM particles to detectable velocities in underground experiments. By analyzing four models of DM-nucleon interactions – namely scalar, vector, pseudoscalar, and axial-vector mediators – we derive constraints on the coupling parameters using data from the LZ, XENON, and Borexino experiments, covering mediator mass from $$10^{-6}$$ 10 - 6 to 1 GeV. As the mediator mass varies, the shift in dominance between momentum transfer and mediator mass leads to a turnover in the constraints around $$10^{-2}$$ 10 - 2 – $$10^{-3}~\\textrm{GeV}$$ 10 - 3 GeV . Our results extend the reach of direct detection into the sub-GeV window and clarify the critical role of momentum dependence in light-mediator scenarios.

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Publication Details

Journal
The European Physical Journal C
Published
2026-09-18
DOI
https://doi.org/10.1140/epjc/s10052-026-16368-7
Primary Topic
Dark Matter and Cosmic Phenomena
Type
article
Field-Weighted Citation Impact
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article

New constraints on cosmic-ray boosted sub-Gev dark matter via light mediators

Bing‐Yu Su, Guan-Sen Wang, Tian-Peng Tang, Yang Yu et al.
The European Physical Journal C
Dark Matter and Cosmic Phenomena
article

New constraints on cosmic-ray boosted sub-Gev dark matter via light mediators

Bing‐Yu Su, Guan-Sen Wang, Tian-Peng Tang, Yang Yu, Lei Feng, Bo Zhang
article en

Abstract

Abstract Traditional direct detection experiments lack the sensitivity to probe the sub-GeV dark matter(DM), primarily due to the low energy of the expected nuclear recoils. In this work, we investigate cosmic-ray (CR) upscattering as a mechanism to accelerate DM particles to detectable velocities in underground experiments. By analyzing four models of DM-nucleon interactions – namely scalar, vector, pseudoscalar, and axial-vector mediators – we derive constraints on the coupling parameters using data from the LZ, XENON, and Borexino experiments, covering mediator mass from $$10^{-6}$$ 10 - 6 to 1 GeV. As the mediator mass varies, the shift in dominance between momentum transfer and mediator mass leads to a turnover in the constraints around $$10^{-2}$$ 10 - 2 – $$10^{-3}~\textrm{GeV}$$ 10 - 3 GeV . Our results extend the reach of direct detection into the sub-GeV window and clarify the critical role of momentum dependence in light-mediator scenarios.

The European Physical Journal CVol. 86(9)
University of Science and Technology of China (CN), Chinese Academy of Sciences (CN), Purple Mountain Observatory (CN)
Openalex Percentile: Top 94%
Dark Matter and Cosmic Phenomena
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New constraints on cosmic-ray boosted sub-Gev dark matter via light mediators — Bing‐Yu Su, Guan-Sen Wang, et al. · The European Physical Journal C (2026) | TGRS Research Map | TGRS