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arxiv: 1601.07992 · v1 · pith:SSO2MEJCnew · submitted 2016-01-29 · 🪐 quant-ph · cond-mat.mes-hall

Sensing Dispersive and Dissipative Forces by an Optomechanical Cavity

classification 🪐 quant-ph cond-mat.mes-hall
keywords optomechanicalcavitymechanicalmirrorobservedresonatoragreementattributed
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We experimentally study an optomechanical cavity that is formed between a mechanical resonator, which serves as a movable mirror, and a stationary on-fiber dielectric mirror. A significant change in the behavior of the system is observed when the distance between the fiber's tip and the mechanical resonator is made smaller than about 1 micrometer. The observed effects are attributed to the combined influence of Casimir force, Coulomb interaction due to trapped charges, and optomechanical coupling. The comparison between experimental results and theory yields a partial agreement.

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