Related Experiment Video
Updated: Apr 21, 2026

Magnetically Induced Rotating Rayleigh-Taylor Instability
Published on: March 3, 2017
Emergence of order from turbulence in an isolated planar superfluid
Tapio Simula1, Matthew J Davis2, Kristian Helmerson1
1School of Physics, Monash University, Victoria 3800, Australia.
Abstract:
We study the relaxation dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bose-Einstein condensate that is imprinted with a spatially random distribution of quantum vortices. Following a period of vortex annihilation the remaining vortices self-organize into two macroscopic coherent "Onsager vortex" clusters that are stable indefinitely--despite the absence of driving or external dissipation in the dynamics. We demonstrate that this occurs due to a novel physical mechanism--the evaporative heating of the vortices--that results in a negative-temperature phase transition in the vortex degrees of freedom. At the end of our simulations the system is trapped in a nonthermal state. Our computational results provide a pathway to observing Onsager vortex states in a superfluid Bose gas.
Related Concept Videos
Steady, Laminar Flow Between Parallel Plates
Laminar and Turbulent Flow
Irrotational Flow
First Law: Particles in Two-dimensional Equilibrium
Newton's first law tells us about...
Dimensionless Groups in Fluid Mechanics
Phase Transitions: Vaporization and Condensation

