English

Superfluid $^3$He-B Surface States in a Confined Geometry Probed by a Microelectromechanical Oscillator

Other Condensed Matter 2023-08-02 v1 Instrumentation and Detectors Quantum Physics

Abstract

A microelectromechanical oscillator with a 0.73 μ\mum gap structure is employed to probe the surface Andreev bound states in superfluid 3^3He-B. The surface specularity of the oscillator is increased by preplating it with 1.6 monolayers of 4^4He. In the linear regime, the temperature dependence of the damping coefficient is measured at various pressures, and the normalized energy gap is extracted. The damping coefficient increases after preplating at lower pressures, which is attributed to the decreased energy minigap of the surface bound states. The device is also driven into the nonlinear regime, where the temperature independent critical velocity at each pressure is measured. The critical velocity is observed to increase after preplating at all pressures, which might be related to the increased average energy gap. The observed behavior warrants a microscopic theory beyond a single parameter characterization of the surface.

Keywords

Cite

@article{arxiv.2303.17073,
  title  = {Superfluid $^3$He-B Surface States in a Confined Geometry Probed by a Microelectromechanical Oscillator},
  author = {W. G. Jiang and C. S. Barquist and K. Gunther and Y. Lee and H. B. Chan},
  journal= {arXiv preprint arXiv:2303.17073},
  year   = {2023}
}

Comments

10 pages, 15 figures, to be submitted to Physical Review B