A two-state Raman coupler for coherent atom optics
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Debs, John
Doering, Daniel
Robins, N.P
Figl, Cristina
Altin, Paul
Close, John
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Optical Society of America
Abstract
We present results on a Raman laser-system that resonantly
drives a closed two-photon transition between two levels in different
hyperfine ground states of 87Rb. The coupler is based on a novel optical
design for producing two phase-coherent optical beams to drive a Raman
transition. Operated as an outcoupler, it produces an atom laser in a single
internal atomic state, with the lower divergence and increased brightness
typical of a Raman outcoupler. Due to the optical nature of the outcoupling,
the two-state outcoupler is an ideal candidate for transferring photon
correlations onto atom-laser beams. As our laser system couples just two
hyperfine ground states, it has also been used as an internal state beamsplitter,
taking the next major step towards free space Ramsey interferometry
with an atom laser.
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Citation
Optics Express 17.4 (2009): 2319-2325
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Optics Express
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