LZ Nuclear-Recoil Excess from Boosted Light Magnetic Dipole-dipole Dark Matter
Jin-Han Liang, Zuowei Liu, Van Que Tran, Yongheng Xu
Abstract
The LZ collaboration has reported a nuclear-recoil excess near 248 keV with a global significance of 2.6σ. Although halo dark matter with a magnetic dipole-dipole interaction and a TeV-scale mass provides the best fit to the excess among the interactions considered by LZ, it predicts a considerable number of events at lower recoil energies, where no excess is observed. We show that a boosted velocity distribution can alleviate this tension and provide a better fit to the LZ recoil spectrum. Moreover, the boost opens up the possibility of explaining the excess with much lighter dark matter, with masses down to the GeV scale. We demonstrate these features first in a model-independent analysis and then realize them in a concrete dark matter model, in which halo dark matter annihilates into on-shell mediators that subsequently decay into boosted dark-sector particles. Our results demonstrate that boosted dark sector particles provide a viable interpretation of the LZ excess.
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