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A Nanofiber-Based Optical Conveyor Belt for Cold Atoms

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arxiv 1207.3021 v2 pith:LCIUKV62 submitted 2012-07-12 physics.atom-ph quant-ph

A Nanofiber-Based Optical Conveyor Belt for Cold Atoms

classification physics.atom-ph quant-ph
keywords atomsopticalfieldnanofiberalongblue-detunedcoldmode
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We demonstrate optical transport of cold cesium atoms over millimeter-scale distances along an optical nanofiber. The atoms are trapped in a one-dimensional optical lattice formed by a two-color evanescent field surrounding the nanofiber, far red- and blue-detuned with respect to the atomic transition. The blue-detuned field is a propagating nanofiber-guided mode while the red-detuned field is a standing-wave mode which leads to the periodic axial confinement of the atoms. Here, this standing wave is used for transporting the atoms along the nanofiber by mutually detuning the two counter-propagating fields which form the standing wave. The performance and limitations of the nanofiber-based transport are evaluated and possible applications are discussed.

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