Author:
Beterov I.I.,Yakshina E.A.,Tretyakov D.B.,Entin V.M.,Singh U.,Kudlaev Ya.V.,Mityanin K.Yu.,Panov K.A.,Al’yanova N.V.,Ryabtsev I.I.
Abstract
Abstract
The trapping of single atoms in optical dipole traps is widely used in experiments on the implementation of quantum processors based on neutral atoms, and studying interatomic interactions. Typically, such experiments employ lenses with a large numerical aperture (NA > 0.5), highly sensitive EMCCD cameras, or photon counters. In this work, we demonstrate trapping and detection of single rubidium atoms using a long-focus objective lens with a numerical aperture NA = 0.172 and a FLir Tau CNV sCMOS camera.
Subject
Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Statistical and Nonlinear Physics,Electronic, Optical and Magnetic Materials
Cited by
6 articles.
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