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Dispersive optomechanics: a membrane inside a cavity

New Journal of Physics · 2008 · Vol. 10(9) · pp. 095008–095008
A M JayichJ C SankeyB M ZwicklC YangJ D ThompsonS M GirvinA A ClerkF MarquardtJ G E Harris

Abstract

We present the results of theoretical and experimental studies of dispersively coupled (or "membrane in the middle") optomechanical systems. We calculate the linear optical properties of a high finesse cavity containing a thin dielectric membrane. We focus on the cavity's transmission, reflection, and finesse as a function of the membrane's position along the cavity axis and as a function of its optical loss. We compare these calculations with measurements and find excellent agreement in cavities with empty-cavity finesses in the range 10^4 to 10^5. The imaginary part of the membrane's index of refraction is found to be approximately 10^(-4). We calculate the laser cooling performance of this system, with a particular focus on the less-intuitive regime in which photons "tunnel" through the membrane on a time scale comparable to the membrane's period of oscillation. Lastly, we present calculations of quantum non-demolition measurements of the membrane's phonon number in the low signal-to-noise regime where the phonon lifetime is comparable to the QND readout time.

Mechanical and Optical ResonatorsStrong Light-Matter InteractionsQuantum Information and CryptographyFinessePhotonPhononRefractive indexOptical cavityPosition (finance)DielectricRange (aeronautics)
Citations
374
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8.91
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Reviews of Modern Physics · 2014 · 5,482 citations
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