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Imaging based feedback cooling of a levitated nanoparticle

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arxiv 2204.05506 v2 pith:KQNNVH3J submitted 2022-04-12 quant-ph physics.optics

classification quant-phphysics.optics
keywords levitatednanoparticlecoolingchargedcmosdetectionfeedbackposition
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Imaging-based detection of the motion of the levitated nanoparticles complements a widely-used interferometric detection method, providing a precise and robust way to estimate the position of the particle. Here, we show the camera-based feedback cooling of a charged nanoparticle levitated in a linear Paul trap. A charged nanoparticle levitated in a vacuum was observed by CMOS camera systems. The nanoparticle images were processed in realtime with a microcontroller integrated with a CMOS image sensor. The phase-delayed position signal was fed-back to one of the trap electrodes resulting in the velocity damping cooling. Our study provides a simple and versatile approach applicable for control of low-frequency mechanical oscillators.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Optical Levitation of Arrays of Microspheres

    physics.optics 2024-12 accept novelty 6.0 of 10

    A 25-element defect-free array of levitated microspheres in vacuum is demonstrated using time-shared optical traps, with sub-nanometer per root hertz camera-based displacement sensitivity.

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