2005Unpublished venueRequires access

Micromotion of a Bose-Einstein-condensate in a dynamic trap

J. H. Müller, O. Morsh, D. Ciampini, G. Smirne, E. Arimondo

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Abstract

Summary form only given. In a time-orbiting-potential-trap (TOP-trap), atoms are confined by a combination of a static quadrupole field and a rotating bias field. Despite its widespread use, the effects of the micromotion of the atoms in such a trap have not been extensively studied so far. In this work, we experimentally investigate the micromotion of a Rb Bose-Einstein condensate in a triaxial TOP-trap and compare our findings with a theoretical model and numerical simulations.

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What this paper is about

Summary form only given. In a time-orbiting-potential-trap (TOP-trap), atoms are confined by a combination of a static quadrupole field and a rotating bias field. Despite its widespread use, the effects of the micromotion of the atoms in such a trap have not been extensively studied so far. In this work, we experimentally investigate the micromotion of a Rb Bose-Einstein condensate in a triaxial TOP-trap and compare our findings with a theoretical model and numerical simulations.

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Available abstract

Summary form only given. In a time-orbiting-potential-trap (TOP-trap), atoms are confined by a combination of a static quadrupole field and a rotating bias field. Despite its widespread use, the effects of the micromotion of the atoms in such a trap have not been extensively studied so far. In this work, we experimentally investigate the micromotion of a Rb Bose-Einstein condensate in a triaxial TOP-trap and compare our findings with a theoretical model and numerical simulations.

Key concepts: Trap (plumbing), Bose–Einstein condensate, Quadrupole, Physics, Work (physics), Field (mathematics), Ion trap, Atomic physics

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