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26 April 2024
 
  » arxiv » 1305.7131

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Efficient, Tightly-Confined Trapping of 226Ra
R. H. Parker ; M. R. Dietrich ; K. Bailey ; J. P. Greene ; R. J. Holt ; M. R. Kalita ; W. Korsch ; Z.-T. Lu ; P. Mueller ; T. P. O'Connor ; J. Singh ; I. A. Sulai ; W. L. Trimble ;
Date 30 May 2013
AbstractWe demonstrate a technique for transferring $^{226}$Ra atoms from a 3-dimensional magneto-optical-trap (MOT) into a standing wave optical dipole trap (ODT) in an adjacent chamber. The resulting small trapping volume (120 $mu$m in diameter) allows for high control of the electric and magnetic fields applied to the atoms. The atoms are first transferred to a traveling-wave optical dipole trap, which is then translated 46 cm to a science chamber. The atoms are subsequently transferred into an orthogonal standing-wave ODT by application of a 1-dimensional MOT along the traveling-wave axis. For each stage, transfer efficiencies exceeding 60% are demonstrated.
Source arXiv, 1305.7131
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