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Hauptverfasser: Gosling, J. M. H., Pontin, A., Alder, F., Rademacher, M., Monteiro, T. S., Barker, P. F.
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2506.17172
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author Gosling, J. M. H.
Pontin, A.
Alder, F.
Rademacher, M.
Monteiro, T. S.
Barker, P. F.
author_facet Gosling, J. M. H.
Pontin, A.
Alder, F.
Rademacher, M.
Monteiro, T. S.
Barker, P. F.
contents Levitated optical mechanical systems have demonstrated excellent force and impulse sensitivity and are currently being developed for the creation of non-classical states of motion in these new quantum systems. An important requirement in the design of these systems is the ability to independently control and cool all three translational degrees of freedom. Here we describe the design and implementation of a stable and robust 3D velocity feedback cooling scheme with particular emphasis on creating minimal cross-talk between the independent oscillatory modes when cooling.
format Preprint
id arxiv_https___arxiv_org_abs_2506_17172
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Feedback cooling scheme for an optically levitated oscillator with controlled cross-talk
Gosling, J. M. H.
Pontin, A.
Alder, F.
Rademacher, M.
Monteiro, T. S.
Barker, P. F.
Optics
Levitated optical mechanical systems have demonstrated excellent force and impulse sensitivity and are currently being developed for the creation of non-classical states of motion in these new quantum systems. An important requirement in the design of these systems is the ability to independently control and cool all three translational degrees of freedom. Here we describe the design and implementation of a stable and robust 3D velocity feedback cooling scheme with particular emphasis on creating minimal cross-talk between the independent oscillatory modes when cooling.
title Feedback cooling scheme for an optically levitated oscillator with controlled cross-talk
topic Optics
url https://arxiv.org/abs/2506.17172