Electromagnetically induced transparency and fourwave mixing in a cold atomic ensemble with large optical depth
Date
2014
Authors
Geng, Jiao
Campbell, Geoff
Bernu, Julien
Higginbottom, Daniel
Sparkes, Benjamin
Assad, Syed
Zhang, Weiping
Robins, Nicholas
Lam, Ping Koy
Buchler, Benjamin
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Institute of Physics Publishing
Abstract
We report on the delay of optical pulses using electromagnetically induced transparency (EIT) in an ensemble of cold atoms with an optical depth exceeding 500. To identify the regimes in which four-wave mixing (4WM) impacts on EIT behaviour, we conduct the experiment in both 85Rb and 87Rb. Comparison with theory shows excellent agreement in both isotopes. In 87Rb negligible 4WM was observed and we obtained one pulse-width of delay with 50% efficiency. In 85Rb 4WM contributes to the output. In this regime we achieve a delay-bandwidth product of 3.7 at 50% ef ficiency, allowing temporally multimode delay, which we demonstrate by compressing two pulses into the memory medium.
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New Journal of Physics
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Journal article
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Open Access
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