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Identification of the low energy excess in dark matter searches with crystal defects

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arxiv 2112.14495 v2 pith:P467OLRZ submitted 2021-12-29 hep-ph

classification hep-ph
keywords observedrecoildefectdefectsenergiesenergyeventsnuclear
verification ladder T0 review T1 audit T2 compute T3 formal
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An excess of events of unknown origin at low energies below 1 keV has been observed in multiple low-threshold dark matter detectors. Depending on the target material, nuclear recoil events at these energies may cause lattice defects, in which case a part of the true recoil energy is stored in the defect and not observed in the phonon detector. If the threshold for defect creation is sharp, this effect leads to a prominent feature in the observed recoil spectrum. Electronic recoils at low energies do not create defects and therefore the feature in the observed spectrum is not expected in that case. We propose to use the sharp defect creation threshold of diamond to test if the low energy events are due to nuclear recoils. Based on simulated data we expect the nuclear recoil bump in the observed spectrum to be visible in diamond with just ~0.1 gram days of exposure.

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  1. Sensitivity study of a sapphire detector using Coherent Elastic Neutrino-Nucleus Scattering process

    hep-ph 2025-02 conditional novelty 5.0 of 10

    Projected sensitivities for the proposed ICNSE sapphire detector show it could constrain new scalar and vector mediator masses at reactor sites, though its neutrino magnetic moment and weak mixing angle reach would be modest.

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