Superfluid vortex dynamics on a torus and other toroidal surfaces of revolution

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hdl:2117/345362
Document typeArticle
Defense date2020-05-04
PublisherAmerican Physical Society (APS)
Rights accessOpen Access
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is licensed under a Creative Commons license
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Attribution-NonCommercial-NoDerivs 3.0 Spain
ProjectEC-FP7-ERC-2013-ADG
QUIC - Quantum simulations of insulators and conductors (EC-H2020-641122)
AGR-INSTITUTO DE CIENCIAS FOTONICAS (MINECO-SEV-2015-0522)
QUIC - Quantum simulations of insulators and conductors (EC-H2020-641122)
AGR-INSTITUTO DE CIENCIAS FOTONICAS (MINECO-SEV-2015-0522)
Abstract
The superfluid flow velocity is proportional to the gradient of the phase of the superfluid order
parameter, leading to the quantization of circulation around a vortex core. In this work, we study
the dynamics of a superfluid film on the surface of a torus. Such a compact surface allows only
configurations of vortices with zero net vorticity. We derive analytic expressions for the flow field,
the total energy, and the time-dependent dynamics of the vortex cores. The local curvature of the
torus and the presence of non-contractable loops on this multiply connected surface alter both the
superfluid flow and the vortex dynamics. Finally we consider more general surfaces of revolution,
called toroids
CitationGuenther, N.; Massignan, P.; Fetter, A. Superfluid vortex dynamics on a torus and other toroidal surfaces of revolution. "Physical review A", 4 Maig 2020, vol. 101, núm. 5.
ISSN2469-9926
Publisher versionhttps://journals.aps.org/pra/abstract/10.1103/PhysRevA.101.053606
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