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Exploring field-induced remnant magnetization traps for Rb atoms

Exploring field-induced remnant magnetization traps for Rb atomsvon Naz Shokrani Sie sparen 16% des UVP sparen 16%
Über Exploring field-induced remnant magnetization traps for Rb atoms

Atomchips serve as versatile quantum optics devices to manipulate ultracold atoms. Having a superconducting atomchip not only provides us with a long coherence time for future hybrid quantum systems, but also gives the opportunity to investigate properties of superconducting materials. In this work, the niobium Z-structure of the atomchip is magnetized by an external magnetic field. The remnant magnetization owing to the hysteresis behavior of the type-II superconducting structure is then used to trap the atoms without applying a chip current and the influence of this magnetization on the trapping the atoms is probed. More characteristics of the field-induced remnant magnetization trap are investigated, like trap-stability and the distance of the atom cloud to the trapping wire for different bias fields.

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  • Sprache:
  • Englisch
  • ISBN:
  • 9786202224321
  • Einband:
  • Taschenbuch
  • Seitenzahl:
  • 92
  • Veröffentlicht:
  • 24. Mai 2019
  • Abmessungen:
  • 150x6x220 mm.
  • Gewicht:
  • 155 g.
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  Versandfertig in 1-2 Wochen.

Beschreibung von Exploring field-induced remnant magnetization traps for Rb atoms

Atomchips serve as versatile quantum optics devices to manipulate ultracold atoms. Having a superconducting atomchip not only provides us with a long coherence time for future hybrid quantum systems, but also gives the opportunity to investigate properties of superconducting materials. In this work, the niobium Z-structure of the atomchip is magnetized by an external magnetic field. The remnant magnetization owing to the hysteresis behavior of the type-II superconducting structure is then used to trap the atoms without applying a chip current and the influence of this magnetization on the trapping the atoms is probed. More characteristics of the field-induced remnant magnetization trap are investigated, like trap-stability and the distance of the atom cloud to the trapping wire for different bias fields.

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