High-Q nanomechanics via destructive interference of elastic waves

Mechanical dissipation poses a ubiquitous challenge to the performance of nanomechanical devices. Here we analyze the support-induced dissipation of high-stress nanomechanical resonators. We develop a model for this loss mechanism and test it on Si(3)N(4) membranes with circular and square geometrie...

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Veröffentlicht in:Physical review letters 2011-01, Vol.106 (4), p.047205-047205, Article 047205
Hauptverfasser: Wilson-Rae, I, Barton, R A, Verbridge, S S, Southworth, D R, Ilic, B, Craighead, H G, Parpia, J M
Format: Artikel
Sprache:eng
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Zusammenfassung:Mechanical dissipation poses a ubiquitous challenge to the performance of nanomechanical devices. Here we analyze the support-induced dissipation of high-stress nanomechanical resonators. We develop a model for this loss mechanism and test it on Si(3)N(4) membranes with circular and square geometries. The measured Q values of different harmonics present a nonmonotonic behavior which is successfully explained. For azimuthal harmonics of the circular geometry we predict that destructive interference of the radiated waves leads to an exponential suppression of the clamping loss in the harmonic index. Our model can also be applied to graphene drums under high tension.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.106.047205