Literature DB >> 16222295

Coherent signal amplification in bistable nanomechanical oscillators by stochastic resonance.

Robert L Badzey1, Pritiraj Mohanty.   

Abstract

Stochastic resonance is a counterintuitive concept: the addition of noise to a noisy system induces coherent amplification of its response. First suggested as a mechanism for the cyclic recurrence of ice ages, stochastic resonance has been seen in a wide variety of macroscopic physical systems: bistable ring lasers, superconducting quantum interference devices (SQUIDs), magnetoelastic ribbons and neurophysiological systems such as the receptors in crickets and crayfish. Although fundamentally important as a mechanism of coherent signal amplification, stochastic resonance has yet to be observed in nanoscale systems. Here we report the observation of stochastic resonance in bistable nanomechanical silicon oscillators. Our nanomechanical systems consist of beams that are clamped at each end and driven into transverse oscillation with the use of a radiofrequency source. Modulation of the source induces controllable switching of the beams between two stable, distinct states. We observe that the addition of white noise causes a marked amplification of the signal strength. Stochastic resonance in nanomechanical systems could have a function in the realization of controllable high-speed nanomechanical memory cells, and paves the way for exploring macroscopic quantum coherence and tunnelling.

Entities:  

Year:  2005        PMID: 16222295     DOI: 10.1038/nature04124

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  15 in total

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7.  Pulse noise-hidden image reconstruction and visualization via stochastic resonance.

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Journal:  Sci Rep       Date:  2016-11-08       Impact factor: 4.379

8.  Optically levitated nanoparticle as a model system for stochastic bistable dynamics.

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Journal:  Nat Commun       Date:  2017-05-09       Impact factor: 14.919

9.  Ubiquitous crossmodal Stochastic Resonance in humans: auditory noise facilitates tactile, visual and proprioceptive sensations.

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Journal:  PLoS One       Date:  2008-08-06       Impact factor: 3.240

10.  An electromechanical Ising Hamiltonian.

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Journal:  Sci Adv       Date:  2016-06-24       Impact factor: 14.136

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