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Superfluid $^{3}\mathrm{He}\text{\ensuremath{-}}\text{B}$ surface states in a confined geometry probed by a microelectromechanical oscillator
Abstract A microelectromechanical oscillator with a 0.73µm gap structure is employed to probe the surface Andreev bound states in superfluid He3−B. The surface specularity of the oscillator is increased by preplating it with 1.6 monolayers of He4. In the linear regime, the temperature dependence of the damping coefficient is measured at various pressures, and the normalized energy gap is extracted.
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