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Origin and evolution of the multiply-quantised vortex instability

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arxiv 2111.02567 v1 pith:XQC6FMUT submitted 2021-11-04 cond-mat.quant-gas hep-phhep-thphysics.flu-dyn

classification cond-mat.quant-gashep-phhep-thphysics.flu-dyn
keywords vortexinstabilitybounddefectsenergykineticnevernon-linear
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We show that the dynamical instability of quantum vortices with more than a single quantum of angular momentum results from a superradiant bound state inside the vortex core. Our conclusion is supported by an analytic WKB calculation and numerical simulations of both linearised and fully non-linear equations of motion for a doubly-quantised vortex at the centre of a circular bucket trap. In the late stage of the instability, we reveal a striking novel behaviour of the system in the non-linear regime. Contrary to expectation, in the absence of dissipation the system never enters the regime of two well-separated phase defects described by Hamiltonian vortex dynamics. Instead, the separation between the two defects undergoes modulations which never exceed a few healing lengths, in which compressible kinetic energy and incompressible kinetic energy are exchanged. This suggests that, under the right conditions, pairs of vortices may be able to form meta-stable bound states.

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