arXiv · 0704.1971
Dissipative dynamics of superfluid vortices at non-zero temperatures
Abstract
We consider the evolution and dissipation of vortex rings in a condensate at non-zero temperature, in the context of the classical field approximation, based on the defocusing nonlinear Schrödinger equation. The temperature in such a system is fully determined by the total number density and the number density of the condensate. A vortex ring is introduced into a condensate in a state of thermal equilibrium, and interacts with non-condensed particles. These interactions lead to a gradual decrease in the vortex line density, until the vortex ring completely disappears. We show that the square of the vortex line length changes linearly with time, and obtain the corresponding universal decay law. We relate this to mutual friction coefficients in the fundamental equation of vortex motion in superfluids.
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Natalia G. Berloff, Anthony J. Youd. 2007-06-21. Dissipative dynamics of superfluid vortices at non-zero temperatures. https://doi.org/10.1103/physrevlett.99.145301
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