DocumentCode :
191221
Title :
Frequency readout of nanomechanical graphene drums via a microwave resonator coupling method
Author :
Goniszewski, Stefan ; Shaforost, Olena ; Klein, Norbert ; Gallop, John ; Ling Hao ; Cox, David
Author_Institution :
Mater. Dept., Imperial Coll. London, London, UK
fYear :
2014
fDate :
6-9 Oct. 2014
Firstpage :
363
Lastpage :
366
Abstract :
In this paper a novel microwave method with the capability of simultaneous actuation and readout of nano-mechanical resonators is described along with the fabrication of graphene nano-mechanical resonator sensor structures. The method uses a high Q quarter wave coaxial resonator coupled to a sharpened conductive tip to create a highly localised near field. Hence allowing for high sensitivity displacement measurements via measurement of changes in the resonant frequency of the coaxial resonator and a simultaneous driving force through a mutual capacitance between probe tip a conducting mechanical resonator. We discuss the use of the microwave system to measure monolayer graphene mechanical resonators and achieve readout of a resonant mode in a 3μm suspended graphene drum.
Keywords :
displacement measurement; graphene devices; microactuators; microwave resonators; monolayers; nanosensors; C; actuation; displacement measurements; frequency readout; graphene nanomechanical resonator sensor structures; high Q quarter wave coaxial resonator; microwave resonator coupling method; microwave system; monolayer graphene mechanical resonators; mutual capacitance; nanomechanical graphene drums; nanomechanical resonators; resonant mode; sharpened conductive tip; Frequency measurement; Graphene; Microwave measurement; Microwave oscillators; Microwave theory and techniques; Probes; Resonant frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference (EuMC), 2014 44th European
Conference_Location :
Rome
Type :
conf
DOI :
10.1109/EuMC.2014.6986445
Filename :
6986445
Link To Document :
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