Prototype Superfluid Gravitational Wave Detector
arXiv:2107.00120 · doi:10.1103/PhysRevD.104.082001
Abstract
We study a cross-shaped cavity filled with superfluid He as a prototype resonant-mass gravitational wave detector. Using a membrane and a re-entrant microwave cavity as a sensitive optomechanical transducer, we were able to observe the thermally excited high- acoustic modes of the helium at 20 mK temperature and achieved a strain sensitivity of Hz to gravitational waves. To facilitate the broadband detection of continuous gravitational waves, we tune the kilohertz-scale mechanical resonance frequencies up to 173 Hz/bar by pressurizing the helium. With reasonable improvements, this architecture will enable the search for GWs in the 1-30 kHz range, relevant for a number of astrophysical sources both within and beyond the Standard Model.
8 pages, 7 figures