arXiv · 1606.04483
Anomalous Damping of a Micro-electro-mechanical Oscillator in Superfluid $^3$He-B
Abstract
The mechanical resonance properties of a micro-electro-mechanical oscillator with a gap of 1.25 $μ$m was studied in superfluid $^3$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 ($Q\approx 80$) down to 0.1 $T_c$, 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.
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P. Zheng, W. G. Jiang, C. S. Barquist, Y. Lee, H. B. Chan. 2016-10-07. Anomalous Damping of a Micro-electro-mechanical Oscillator in Superfluid $^3$He-B. https://doi.org/10.1103/physrevlett.117.195301
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