Magnetic conveyor belt transport of ultracold atoms to a superconducting atomchip

We report the realization of a robust magnetic transport scheme to bring >3 × 10 8 ultracold 87 Rb atoms into a cryostat. The sequence starts with standard laser cooling and trapping of 87 Rb atoms, transporting first horizontally and then vertically through the radiation shields into a cryostat...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2014-09, Vol.116 (4), p.1017-1021
Hauptverfasser: Minniberger, Stefan, Diorico, Fritz, Haslinger, Stefan, Hufnagel, Christoph, Novotny, Christian, Lippok, Nils, Majer, Johannes, Koller, Christian, Schneider, Stephan, Schmiedmayer, Jörg
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Sprache:eng
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Zusammenfassung:We report the realization of a robust magnetic transport scheme to bring >3 × 10 8 ultracold 87 Rb atoms into a cryostat. The sequence starts with standard laser cooling and trapping of 87 Rb atoms, transporting first horizontally and then vertically through the radiation shields into a cryostat by a series of normal- and superconducting magnetic coils. Loading the atoms in a superconducting microtrap paves the way for studying the interaction of ultracold atoms with superconducting surfaces and quantum devices requiring cryogenic temperatures.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-014-5790-5