Observation of backaction and self-induced trapping in a planar hollow photonic crystal cavity

The optomechanical coupling between a resonant optical field and a nanoparticle through trapping forces is demonstrated. Resonant optical trapping, when achieved in a hollow photonic crystal cavity is accompanied by cavity backaction effects that result from two mechanisms. First, the effect of the...

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Veröffentlicht in:Physical review letters 2013-03, Vol.110 (12), p.123601-123601, Article 123601
Hauptverfasser: Descharmes, Nicolas, Dharanipathy, Ulagalandha Perumal, Diao, Zhaolu, Tonin, Mario, Houdré, Romuald
Format: Artikel
Sprache:eng
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Zusammenfassung:The optomechanical coupling between a resonant optical field and a nanoparticle through trapping forces is demonstrated. Resonant optical trapping, when achieved in a hollow photonic crystal cavity is accompanied by cavity backaction effects that result from two mechanisms. First, the effect of the particle on the resonant field is measured as a shift in the cavity eigenfrequency. Second, the effect of the resonant field on the particle is shown as a wavelength-dependent trapping strength. The existence of two distinct trapping regimes, intrinsically particle specific, is also revealed. Long optical trapping (>10 min) of 500 nm dielectric particles is achieved with very low intracavity powers (
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.110.123601