Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session R24: Hybrid/Macroscopic Quantum Systems, Optomechanics, and Interfacing AMO with Solid State/Nano Systems III
8:00 AM–11:00 AM,
Thursday, March 7, 2019
BCEC
Room: 159
Sponsoring
Units:
DAMOP DQI
Chair: Nathan Schine, University of Chicago
Abstract: R24.00003 : Persistent and Reversible Frequency Tuning in Graphene/Hexagonal Boron-Nitride Nanomechanical Resonators
8:24 AM–8:36 AM
Presenter:
David Miller
(University of Oregon)
Authors:
David Miller
(University of Oregon)
Andrew Blaikie
(University of Oregon)
Benjamin J Aleman
(University of Oregon)
Here, we demonstrate that the resonance frequency of nanomechanical resonators can be persistently and reversibly tuned using photoelectric doping[1]. We demonstrate this effect in drumheads made from heterostructures of hexagonal boron-nitride (h-BN) and graphene. However, this technique could potentially be extended to electromechanical resonators made from any material that can be photoelectrically doped. We observe tuning that is robust over weeks, can occur at rates as fast as ~1 GHz/s, and has a tuning range of greater than 250%.This could enable future applications which need large numbers of individually tunable nanomechanical elements, such as chip-scale optomechanical circuits.
[1] L. Ju et al., “Photoinduced doping in heterostructures of graphene and boron nitride,” Nat. Nanotechnol., vol. 9, no. 5, pp. 348–352, 2014.
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