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Species-selective confinement of atoms dressed with multiple radiofrequencies
by
Foot, C J
, Luksch, K
, Bentine, E
, Harte, T L
, Yuen, B
, Mur-Petit, J
, Barker, A
in
Constituents
/ Gas mixtures
/ Radio frequency
/ Stability
2017
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Species-selective confinement of atoms dressed with multiple radiofrequencies
by
Foot, C J
, Luksch, K
, Bentine, E
, Harte, T L
, Yuen, B
, Mur-Petit, J
, Barker, A
in
Constituents
/ Gas mixtures
/ Radio frequency
/ Stability
2017
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Species-selective confinement of atoms dressed with multiple radiofrequencies
Paper
Species-selective confinement of atoms dressed with multiple radiofrequencies
2017
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Overview
Methods to manipulate the individual constituents of an ultracold quantum gas mixture are essential tools for a number of applications, for example the direct quantum simulation of impurity physics. We investigate a scheme in which species-selective control is achieved using magnetic potentials dressed with multiple radiofrequencies, exploiting the different Landé g-factors of the constituent atomic species. We describe a mixture dressed with two frequencies, where atoms are confined in harmonic potentials with a controllable degree of overlap between the two atomic species. This is then extended to a four radiofrequency scheme in which a double well potential for one species is overlaid with a single well for the other. The discussion is framed with parameters that are suitable for a 85Rb and 87Rb mixture, but is readily generalised to other combinations.
Publisher
Cornell University Library, arXiv.org
Subject
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