Energy loss in low energy nuclear recoils in dark matter detector materials
arXiv:2206.06772 · doi:10.1103/PhysRevD.106.063012
Abstract
Recent progress in phonon-mediated detectors with eV-scale nuclear recoil energy sensitivity requires an understanding of the effect of the crystalline defects on the energy spectrum expected from dark matter or neutrino coherent scattering. We have performed molecular dynamics simulations to determine the amount of energy stored in the lattice defects as a function of the recoil direction and energy. This energy can not be observed in the phonon measurement, thus affecting the observed energy spectrum compared to the underlying true recoil energy spectrum. We describe this effect for multiple commonly used detector materials and demonstrate how the predicted energy spectrum from dark matter scattering is modified.
10 pages, 5 figures, one table. The MD simulation data can be obtained from https://github.com/sebsassi/elosssim ; v2 matches the published version
References in corpus (7)
- Searching for low-mass dark matter particles with a massive Ge bolometer operated above-ground
- EXCESS workshop: Descriptions of rising low-energy spectra
- Searches for light dark matter using condensed matter systems
- Dark matter direct detection from the single phonon to the nuclear recoil regime
- Performance of a Large Area Photon Detector For Rare Event Search Applications
- Velocity Dependent Dark Matter Interactions in Single-Electron Resolution Semiconductor Detectors with Directional Sensitivity
- Solar neutrinos and dark matter detection with diurnal modulation
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