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Crossover between Kelvin-Helmholtz and counter-superflow instabilities in two-component Bose-Einstein condensates

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arxiv 1009.1740 v1 pith:NRVVQFNR submitted 2010-09-09 cond-mat.quant-gas

classification cond-mat.quant-gas
keywords instabilitiesinterfacecondensatescounter-superflowdominantinstabilitysystemanalyses
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Dynamical instabilities at the interface between two Bose--Einstein condensates that are moving relative to each other are investigated using mean-field and Bogoliubov analyses. Kelvin--Helmholtz instability is dominant when the interface thickness is much smaller than the wavelength of the unstable interface mode, whereas the counter-superflow instability becomes dominant in the opposite case. These instabilities emerge not only in an immiscible system but also in a miscible system where an interface is produced by external potential. Dynamics caused by these instabilities are numerically demonstrated in rotating trapped condensates.

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  1. Nonlinear dynamics of Josephson vortices in merging superfluid rings

    cond-mat.quant-gas 2019-08 conditional novelty 7.0 of 10

    In simulated mergers of two toroidal BECs, the final vorticity is set by the initially more populated ring above an imbalance threshold, while elongated traps support long-lived hybrid vortex complexes.

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