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Crystal Defects: A Portal To Dark Matter Detection

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arxiv 2002.03525 v2 pith:DEDSYIFB submitted 2020-02-10 physics.ins-det astro-ph.COcond-mat.mtrl-scihep-ex

Crystal Defects: A Portal To Dark Matter Detection

classification physics.ins-det astro-ph.COcond-mat.mtrl-scihep-ex
keywords darkmatterenergyexpectedcreationdefectlossdetectors
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We propose to use the defect creation energy loss in commonly used high energy physics solid state detectors as a tool to statistically identify dark matter signal from background. We simulate the energy loss in the process of defect creation using density functional theory and molecular dynamics methods and calculate the corresponding expected dark matter spectra. We show that in phonon-mediated solid state detectors, the energy loss due to defect creation convolved with the expected dark matter interaction signal results in a significant change in the expected spectra for common detector materials. With recent progress towards $\sim$10 eV threshold low-mass dark matter searches, this variation in expected dark matter spectrum can be used as a direct signature of dark matter interactions with atomic nuclei.

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