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Full Rotational Control of Levitated Silicon Nanorods

arXiv
Authors: Stefan Kuhn, Alon Kosloff, Benjamin A. Stickler, Fernando Patolsky, Klaus Hornberger, Markus Arndt, James Millen

Year

2016

Paper ID

7793

Status

Preprint

Abstract Read

~2 min

Abstract Words

124

Citations

N/A

Abstract

We study a nanofabricated silicon rod levitated in an optical trap. By manipulating the polarization of the light we gain full control over the ro-translational dynamics of the rod. We are able to trap both its centre-of-mass and align it along the linear polarization of the laser field. The rod can be set into rotation at a tuned frequency by exploiting the radiation pressure exerted by elliptically polarized light. The rotational motion of the rod dynamically modifies the optical potential, which allows tuning of the rotational frequency over hundreds of Kilohertz. This ability to trap and control the motion and alignment of nanoparticles opens up the field of rotational optomechanics, rotational ground state cooling and the study of rotational thermodynamics in the underdamped regime.

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  • This paper contributes to the Quantum Thermodynamics research area in the Quantum Articles archive.
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  • We study a nanofabricated silicon rod levitated in an optical trap.

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Current Paper #7793 #68437 Transition-state lattice modes ... #68465 Bounding Eigenstate Overlap fro... #68456 Analytic Properties of the Jost... #68455 Mediative Fuzzy Logic: From Typ...

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