Publication | Open Access
Sub-Kelvin Feedback Cooling and Heating Dynamics of an Optically Levitated Librator
55
Citations
48
References
2021
Year
Optical MaterialsQuantum PhotonicsEngineeringSub-kelvin Feedback CoolingMechanical RotorsDielectric NanodumbbellOptomechanical SystemOptomechanicsTorque FluctuationsHeating DynamicsOptical PropertiesThermodynamicsLevitated OptomechanicsNanophotonicsOptical PumpingPhotonicsQuantum ScienceOptically Levitated LibratorPhysicsCavity OptomechanicsHeat TransferQuantum OpticApplied PhysicsOptical Trapping
Rotational optomechanics strives to gain quantum control over mechanical rotors by harnessing the interaction of light and matter. We optically trap a dielectric nanodumbbell in a linearly polarized laser field, where the dumbbell represents a nanomechanical librator. Using measurement-based parametric feedback control in high vacuum, we cool this librator from room temperature to 240 mK and investigate its heating dynamics when released from feedback. We exclude collisions with residual gas molecules as well as classical laser noise as sources of heating. Our findings indicate that we observe the torque fluctuations arising from the zero-point fluctuations of the electromagnetic field.
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