Simultaneous cooling of coupled mechanical oscillators using whispering gallery mode resonances
arXiv:1508.06217 · doi:10.1364/OE.24.001392
Abstract
We demonstrate simultaneous center-of-mass cooling of two coupled oscillators, consisting of a microsphere-cantilever and a tapered optical fiber. Excitation of a whispering gallery mode (WGM) of the microsphere, via the evanescent field of the taper, provides a transduction signal that continuously monitors the relative motion between these two microgram objects with a sensitivity of 3 pm. The cavity enhanced optical dipole force is used to provide feedback damping on the motion of the micron-diameter taper, whereas a piezo stack is used to damp the motion of the much larger (up to m in diameter), heavier (up to kg) and stiffer microsphere-cantilever. In each feedback scheme multiple mechanical modes of each oscillator can be cooled, and mode temperatures below 10 K are reached for the dominant mode, consistent with limits determined by the measurement noise of our system. This represents stabilization on the picometer level and is the first demonstration of using WGM resonances to cool the mechanical modes of both the WGM resonator and its coupling waveguide.
10 pages, 8 figures
References in corpus (11)
- Resolved Sideband Cooling of a Micromechanical Oscillator
- Optical combs with a crystalline whispering gallery mode resonator
- Testing the limits of quantum mechanical superpositions
- Feedback cooling of a cantilever's fundamental mode below 5 mK
- Measurement and control of a mechanical oscillator at its thermal decoherence rate
- High-sensitivity optical monitoring of a micro-mechanical resonator with a quantum-limited optomechanical sensor
- Quantum Noise Interference and Back-action Cooling in Cavity Nanomechanics
- Optical dilution and feedback cooling of a gram-scale oscillator to 6.9 mK
- Attonewton force detection using microspheres in a dual-beam optical trap in high vacuum
- Optomechanical Transduction and Characterization of a Silica Microsphere Pendulum via Evanescent Light
- Multimode laser cooling and ultra-high sensitivity force sensing with nanowires
Cited by in corpus (8)
- Optomechanics with Levitated Particles
- Characterization and Testing of a Micro-g Whispering Gallery Mode Optomechanical Accelerometer
- Control of Fano resonances and slow light using Bose-Einstein condensates in a nanocavity
- Cramér-Rao bound for time-continuous measurements in linear Gaussian quantum systems
- Unravelling the noise: the discrimination of wave function collapse models under time-continuous measurements
- Optomechanical cooling and self-stabilization of a waveguide coupled to a whispering-gallery-mode resonator
- In-situ tuning of whispering gallery modes of levitated silica microspheres
- Quantum Physics in Space