Micromotion of a Bose-Einstein-condensate in a dynamic trap
J. H. Müller, O. Morsh, D. Ciampini, G. Smirne, E. Arimondo
Abstract
J. H. Müller, O. Morsh, D. Ciampini, G. Smirne, E. Arimondo
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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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