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Diffusion-induced bistability of driven nanomechanical resonators
J Atalaya1, A Isacsson, M I Dykman
1Department of Applied Physics, Chalmers University of Technology, Göteborg, Sweden.
Abstract:
We study nanomechanical resonators with frequency fluctuations due to diffusion of absorbed particles. The diffusion depends on the vibration amplitude through inertial effect. We find that, if the diffusion coefficient D is sufficiently large, the resonator response to periodic driving displays bistability. The lifetime of the coexisting vibrational states exponentially increases with increasing D and displays a scaling dependence on the parameters close to bifurcation points.
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