Publication | Open Access
Scissors Mode and Superfluidity of a Trapped Bose-Einstein Condensed Gas
166
Citations
21
References
1999
Year
Superfluid CaseQuantum LiquidEngineeringPhysicsSudden RotationNatural SciencesGas DynamicApplied PhysicsCondensed Matter PhysicsUltracold AtomCold ChemistryScissors ModeBose-einstein CondensationQuantum MatterCondensed Matter Theory
We investigate the oscillation of a dilute atomic gas generated by a sudden rotation of the confining trap (scissors mode). This oscillation reveals the effects of superfluidity exhibited by a Bose-Einstein condensate. The scissors mode is also investigated in a classical gas above ${T}_{c}$ in various collisional regimes. The crucial difference with respect to the superfluid case arises from the occurrence of low frequency components, which are responsible for the rigid value of the moment of inertia. Different experimental procedures to excite the scissors mode are discussed.
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