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Efficient collisional blockade loading of a single atom into a tight microtrap
Journal article   Open access   Peer reviewed

Efficient collisional blockade loading of a single atom into a tight microtrap

Y H Fung and M F Andersen
New journal of physics, Vol.17(7), 073011
09/07/2015
Handle:
https://hdl.handle.net/10523/30374

Abstract

collisional blockade light-assisted collisions optical microtraps quantum information processing single atoms
We show that controlled inelastic collisions can improve the single atom loading efficiency in the collisional blockade regime of optical microtraps. A collisional loss process where only one of the colliding atoms is lost, implemented during loading, enables us to kick out one of the atoms as soon as a second atom enters the optical microtrap. When this happens faster than the pair loss, which has limited the loading efficiency of previous experiments to about 50%, we experimentally observe an enhancement to 80%. A simple analytical theory predicts the loading dynamics. Our results open up an efficient and fast route for loading individual atoms into optical tweezers and arrays of microtraps that are too tight for easy implementation of the method reported in [1, 2]. The loading of tight traps with single atoms is a requirement for their applications in future experiments in quantum information processing and few-body physics.
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Fung_2015_New_J._Phys._17_0730111.20 MBDownloadView
Published (Version of record) Open Access CC BY V4.0
url
https://doi.org/10.1088/1367-2630/17/7/073011View
Published (Version of record) Open CC BY V4.0

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