Paper
10 May 2010 GaAs micro-nanodisks probed by a looped fiber taper for optomechanics applications
L. Ding, P. Senellart, A. Lemaitre, S. Ducci, G. Leo, I. Favero
Author Affiliations +
Abstract
GaAs micro-nanodisks (typical disk size 5 μm × 200 nm in our work) are good candidates for boosting optomechanical phenomena thanks to their ability to confine both optical and mechanical energy in a sub-micron interaction volume. We present results of optomechanical characterization of GaAs disks by near-field optical coupling from a tapered silica nano-waveguide. Whispering gallery modes with optical Q factor up to a few 105 are observed. Critical coupling, optical resonance doublet splitting and mode identification are discussed. We eventually show an optomechanical phenomenon of optical force attraction of the silica taper to the disk. This phenomenon shows that mechanical and optical degrees of freedom naturally couple at the micro-nanoscale.
© (2010) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
L. Ding, P. Senellart, A. Lemaitre, S. Ducci, G. Leo, and I. Favero "GaAs micro-nanodisks probed by a looped fiber taper for optomechanics applications", Proc. SPIE 7712, Nanophotonics III, 771211 (10 May 2010); https://doi.org/10.1117/12.853985
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CITATIONS
Cited by 19 scholarly publications.
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KEYWORDS
Near field optics

Gallium arsenide

Resonators

Silica

Near field

Waveguides

Optomechanical design

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