Realising a species-selective double well with multiple-radiofrequency-dressed potentials

Techniques to manipulate the individual constituents of an ultracold mixture are key to investigating impurity physics. In this work, we confine a mixture of hyperfine ground states of 87Rb atoms in a double-well potential. The potential is produced by dressing the atoms with multiple radiofrequenci...

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Main Authors: Barker, AJ, Sunami, S, Garrick, D, Beregi, A, Luksch, K, Bentine, E, Foot, CJ
Format: Journal article
Language:English
Published: IOP Publishing 2020
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author Barker, AJ
Sunami, S
Garrick, D
Beregi, A
Luksch, K
Bentine, E
Foot, CJ
author_facet Barker, AJ
Sunami, S
Garrick, D
Beregi, A
Luksch, K
Bentine, E
Foot, CJ
author_sort Barker, AJ
collection OXFORD
description Techniques to manipulate the individual constituents of an ultracold mixture are key to investigating impurity physics. In this work, we confine a mixture of hyperfine ground states of 87Rb atoms in a double-well potential. The potential is produced by dressing the atoms with multiple radiofrequencies. The amplitude and phase of each frequency component of the dressing field are controlled to independently manipulate each species. Furthermore, we verify that our mixture of hyperfine states is collisionally stable, with no observable inelastic loss.
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spelling oxford-uuid:ee0420e6-4ae7-42ad-89ab-5151a2c5f8f42022-03-27T11:29:37ZRealising a species-selective double well with multiple-radiofrequency-dressed potentialsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:ee0420e6-4ae7-42ad-89ab-5151a2c5f8f4EnglishSymplectic ElementsIOP Publishing2020Barker, AJSunami, SGarrick, DBeregi, ALuksch, KBentine, EFoot, CJTechniques to manipulate the individual constituents of an ultracold mixture are key to investigating impurity physics. In this work, we confine a mixture of hyperfine ground states of 87Rb atoms in a double-well potential. The potential is produced by dressing the atoms with multiple radiofrequencies. The amplitude and phase of each frequency component of the dressing field are controlled to independently manipulate each species. Furthermore, we verify that our mixture of hyperfine states is collisionally stable, with no observable inelastic loss.
spellingShingle Barker, AJ
Sunami, S
Garrick, D
Beregi, A
Luksch, K
Bentine, E
Foot, CJ
Realising a species-selective double well with multiple-radiofrequency-dressed potentials
title Realising a species-selective double well with multiple-radiofrequency-dressed potentials
title_full Realising a species-selective double well with multiple-radiofrequency-dressed potentials
title_fullStr Realising a species-selective double well with multiple-radiofrequency-dressed potentials
title_full_unstemmed Realising a species-selective double well with multiple-radiofrequency-dressed potentials
title_short Realising a species-selective double well with multiple-radiofrequency-dressed potentials
title_sort realising a species selective double well with multiple radiofrequency dressed potentials
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