arXiv:2106.03939·v1·High Energy Physics — Phenomenology
Dark Sound
Alexander Balatsky🇸🇪 · Benjo Fraser🇸🇪 · Henrik Roising🇸🇪
Abstract
We discuss the axion dark matter (DM) condensate and the consequences the interactions of dark matter would have on the spectrum of collective modes. We find that DM self-interactions change the spectrum of excitations from a quadratic to a linear-like dispersion with velocity which is set by the interactions, but dominated by gravity. For typical DM densities and interactions we find . This sound-like mode corresponds to DM density oscillations just like in any other Bose liquid, hence we call it {\em Dark Sound} (DS). The DS mode is well defined and describes stable density oscillations at intermediate length scales . In the extreme long wavelength limit gravity dominates and leads to Jeans instability of the sound mode at the scale of clump formation . We also discuss the possible observable consequences of the DS, including quantized DS modes inside clumps, their characteristic energy, and noise features that might facilitate the observation of DM.
Comments: 19 pages, a few figures