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Onsager vortex formation in Bose-Einstein condensates in two-dimensional power-law traps

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posted on 2024-07-26, 14:44 authored by Andrew J. Groszek, Tapio SimulaTapio Simula, David M. Paganin, Kristian Helmerson
We study computationally dynamics of quantized vortices in two-dimensional superfluid Bose-Einstein condensates confined in highly oblate power-law traps. We have found that the formation of large-scale Onsager vortex clusters prevalent in steep-walled traps is suppressed in condensates confined by harmonic potentials. However, the shape of the trapping potential does not appear to adversely affect the evaporative heating efficiency of the vortex gas. Instead, the suppression of Onsager vortex formation in harmonic traps can be understood in terms of the energy of the vortex configurations. Furthermore, we find that the vortex-antivortex pair annihilation that underpins the vortex evaporative heating mechanism requires the interaction of at least three vortices. We conclude that experimental observation of Onsager vortices should be the most apparent in flat or inverted-bottom traps.

Funding

Life is swirl in flatland: two dimensional turbulence in a superfluid

Australian Research Council

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ISSN

2469-9934

Journal title

Physical Review A

Volume

93

Issue

4

Article number

article no. 043614

Pagination

043614-

Publisher

American Physical Society

Copyright statement

Copyright © 2016 American Physical Society. The published version is reproduced in accordance with the copyright policy of the publisher.

Language

eng

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