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Roton confinement in trapped dipolar Bose-Einstein condensates

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arxiv 1301.4907 v3 pith:QPR3XCOW submitted 2013-01-21 cond-mat.quant-gas physics.atom-phquant-ph

Roton confinement in trapped dipolar Bose-Einstein condensates

classification cond-mat.quant-gas physics.atom-phquant-ph
keywords rotonconfinementdensitydipolarcondensatesgasesinstabilityrole
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Roton excitations constitute a key feature of dipolar gases, connecting these gases with superfluid helium. We show that the density dependence of the roton minimum results in a spatial roton confinement, particularly relevant in pancake dipolar condensates with large aspect ratios. We show that roton confinement plays a crucial role in the dynamics after roton instability, and that arresting the instability may create a trapped roton gas revealed by confined density modulations. We discuss the local susceptibility against density perturbations, which we illustrate for the case of vortices. Roton confinement is expected to play a key role in experiments.

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