paper

Anomalous Damping of a Micro-electro-mechanical Oscillator in Superfluid He-B

arXiv:1606.04483 · doi:10.1103/PhysRevLett.117.195301

Abstract

The mechanical resonance properties of a micro-electro-mechanical oscillator with a gap of 1.25 m was studied in superfluid He-B at various pressures. The oscillator was driven in the linear damping regime where the damping coefficient is independent of the oscillator velocity. The quality factor of the oscillator remains low () down to 0.1 , 4 orders of magnitude less than the intrinsic quality factor measured in vacuum at 4 K. In addition to the Boltzmann temperature dependent contribution to the damping, a damping proportional to temperature was found to dominate at low temperatures. We propose a multiple scattering mechanism of the surface Andreev bound states to be a possible cause for the anomalous damping.

5 pages, 5 figures