We study a superfluid in a planar annulus hosting vortices with massive cores. An analytical point-vortex model shows that the massive vortices may perform radial oscillations on top of the usual uniform precession of their massless counterpart. Beyond a critical vortex mass, this oscillatory motion becomes unstable and the vortices are driven towards one of the edges. The analogy with the motion of a charged particle in a static electromagnetic field leads to the development of a plasma orbit theory that provides a description of the trajectories which remains accurate even beyond the regime of small radial oscillations. These results are confirmed by the numerical solution of coupled two-component Gross-Pitaevskii equations. The analysis is then extended to a necklace of vortices symmetrically arranged within the annulus.

Massive superfluid vortices and vortex necklaces on a planar annulus / Caldara, M.; Richaud, A.; Capone, M.; Massignan, P.. - In: SCIPOST PHYSICS. - ISSN 2542-4653. - 15:2(2023), pp. 1-33. [10.21468/SciPostPhys.15.2.057]

Massive superfluid vortices and vortex necklaces on a planar annulus

Caldara, M.;Richaud, A.
;
Capone, M.;
2023-01-01

Abstract

We study a superfluid in a planar annulus hosting vortices with massive cores. An analytical point-vortex model shows that the massive vortices may perform radial oscillations on top of the usual uniform precession of their massless counterpart. Beyond a critical vortex mass, this oscillatory motion becomes unstable and the vortices are driven towards one of the edges. The analogy with the motion of a charged particle in a static electromagnetic field leads to the development of a plasma orbit theory that provides a description of the trajectories which remains accurate even beyond the regime of small radial oscillations. These results are confirmed by the numerical solution of coupled two-component Gross-Pitaevskii equations. The analysis is then extended to a necklace of vortices symmetrically arranged within the annulus.
2023
15
2
1
33
057
10.21468/SciPostPhys.15.2.057
https://arxiv.org/abs/2301.08493
Caldara, M.; Richaud, A.; Capone, M.; Massignan, P.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/136250
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