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Roton excitations in a trapped dipolar Bose-Einstein condensate

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arxiv 1308.5812 v2 pith:46AHL4HC submitted 2013-08-27 cond-mat.quant-gas

classification cond-mat.quant-gas
keywords modesangularexcitationsrotonbose-einsteincondensatedipolarmomentum
verification ladder T0 review T1 audit T2 compute T3 formal
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We consider the quasi-particle excitations of a trapped dipolar Bose-Einstein condensate. By mapping these excitations onto radial and angular momentum we show that the roton modes are clearly revealed as discrete fingers in parameter space, whereas the other modes form a smooth surface. We examine the properties of the roton modes and characterize how they change with the dipole interaction strength. We demonstrate how the application of a perturbing potential can be used to engineer angular rotons, i.e. allowing us to controllably select modes of non-zero angular momentum to become the lowest energy rotons.

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