For direct detection of sub-MeV dark matter, a promising strategy is to search for individual phonon excitations in a crystal. We perform an analytic calculation of the rate for light dark matter (keV <mDM< MeV) to produce two acoustic phonons through scattering in cubic crystals such as GaAs, Ge, Si and diamond. The multiphonon rate is always smaller than the rate to produce a single optical phonon, whenever the latter is kinematically accessible. In Si and diamond there is a dark matter mass range for which multiphonon production can be the most promising process, depending on the experimental threshold.
Cite
@article{arxiv.1911.03482,
title = {Multiphonon excitations from dark matter scattering in crystals},
author = {Brian Campbell-Deem and Peter Cox and Simon Knapen and Tongyan Lin and Tom Melia},
journal= {arXiv preprint arXiv:1911.03482},
year = {2020}
}