Inouye, S.; Gupta, S.; Rosenband, T.; Chikkatur, A. P.; Goerlitz, A.; Gustavson, T. L.; Leanhardt, A. E.; Pritchard, D. E.; Ketterle, W.
Funding organisation: United States (United States)
arXiv e-print [ PDF ]2001
Funding organisation: United States (United States)
arXiv e-print [ PDF ]2001
AbstractAbstract
[en] We have observed phase singularities due to vortex excitation in Bose-Einstein condensates. Vortices were created by moving a laser beam through a condensate. They were observed as dislocations in the interference fringes formed by the stirred condensate and a second unperturbed condensate. The velocity dependence for vortex excitation and the time scale for re-establishing a uniform phase across the condensate were determined
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Othernumber: PRLTAO000087000008080402000001; 033132PRL
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Journal Article
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Physical Review Letters; ISSN 0031-9007; ; v. 87(8); p. 080402-080402.4
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AbstractAbstract
[en] Magnetically and optically confined Bose-Einstein condensates were studied near a microfabricated surface. Condensate fragmentation observed in microfabricated magnetic traps was not observed in optical dipole traps at the same location. The measured condensate lifetime was ≥20 s and independent of the atom-surface separation under both magnetic and optical confinement. Radio-frequency spin-flip transitions driven by technical noise were directly observed for optically confined condensates and could limit the condensate lifetime in microfabricated magnetic traps
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(c) 2003 The American Physical Society; Country of input: International Atomic Energy Agency (IAEA)
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