Searching for low mass dark matter via phonon creation in superfluid 4He
arXiv:2005.08824 · doi:10.1103/PhysRevD.102.035014
Abstract
We consider the scattering of dark matter particles from superfluid liquid He, which has been proposed as a target for their direct detection. Focusing on dark matter masses below ~1 MeV, we demonstrate from sum-rule arguments the importance of the production of single phonons with energies meV. We show further that the anomalous dispersion of phonons in liquid He at low pressures [i.e., , where and are the phonon momentum and energy] has the important consequence that a single phonon will decay over a relatively short distance into a shower of lower energy phonons centered on the direction of the original phonon. Thus the experimental challenge in this regime is to detect a shower of low energy phonons, not just a single phonon. Additional information from the distribution of phonons in such a shower could enhance the determination of the dark matter mass.
17 pages, 12 figures; Updated with correction to 2-phonon integration limits, Equations 55-59