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Strong opto-electro-mechanical coupling in a silicon photonic crystal cavityo

Academic Article
Publication Date:
2015
abstract:
We fabricate and characterize a microscale silicon opto-electro-mechanical system whose mechanical motion is coupled capacitively to an electrical circuit and optically via radiation pressure to a photonic crystal cavity. To achieve large electromechanical interaction strength, we implement an inverse shadow mask fabrication scheme which obtains capacitor gaps as small as 30 nm while maintaining a silicon surface quality necessary for minimizing optical loss. Using the sensitive optical read-out of the photonic crystal cavity, we characterize the linear and nonlinear capacitive coupling to the fundamental omega(m)/2 pi - 63 MHz in-plane flexural motion of the structure, showing that the large electromechanical coupling in such devices may be suitable for realizing efficient microwave-to-optical signal conversion. (C) 2015 Optical Society of America
Iris type:
01.01 Articolo in rivista
Keywords:
QUANTUM GROUND-STATE; RESONATORS; TRANSDUCTION; OSCILLATOR; MICROWAVE; SENSORS; SYSTEMS; MOTION; LIGHT
List of contributors:
Pitanti, Alessandro; Tredicucci, Alessandro
Authors of the University:
PITANTI ALESSANDRO
Handle:
https://iris.cnr.it/handle/20.500.14243/293296
Published in:
OPTICS EXPRESS
Journal
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https://www.osapublishing.org/oe/fulltext.cfm?uri=oe-23-3-3196&id=311659
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