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 ...
We numerically model decaying quantum turbulence in two-dimensional disk-shaped Bose-Einstein conden...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
In this work the relaxation of a two-dimensional Bose-gas from a non-equilibrium initial condition ...
We study the relaxation dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bo...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
We study the relaxation of a two-dimensional (2D) ultracold Bose gas from a nonequilibrium initial s...
We study the relaxation of a two-dimensional (2D) ultracold Bose gas from a nonequilibrium initial s...
Adding energy to a system through transient stirring usually leads to more disorder. In contrast, po...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
Despite the prominence of Onsager's point-vortex model as a statistical description of 2D classical ...
We develop a stochastic Gross-Pitaveskii theory suitable for the study of Bose-Einstein condensation...
We investigate thermal relaxation of superfluid turbulence in a highly oblate Bose-Einstein condensa...
A large ensemble of quantum vortices in a superfluid may itself be treated as a novel kind of fluid ...
We show that the formation of a vortex lattice in a weakly interacting Bose condensed gas can be mod...
We numerically model decaying quantum turbulence in two-dimensional disk-shaped Bose-Einstein conden...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
In this work the relaxation of a two-dimensional Bose-gas from a non-equilibrium initial condition ...
We study the relaxation dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bo...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
We study the relaxation of a two-dimensional (2D) ultracold Bose gas from a nonequilibrium initial s...
We study the relaxation of a two-dimensional (2D) ultracold Bose gas from a nonequilibrium initial s...
Adding energy to a system through transient stirring usually leads to more disorder. In contrast, po...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
Despite the prominence of Onsager's point-vortex model as a statistical description of 2D classical ...
We develop a stochastic Gross-Pitaveskii theory suitable for the study of Bose-Einstein condensation...
We investigate thermal relaxation of superfluid turbulence in a highly oblate Bose-Einstein condensa...
A large ensemble of quantum vortices in a superfluid may itself be treated as a novel kind of fluid ...
We show that the formation of a vortex lattice in a weakly interacting Bose condensed gas can be mod...
We numerically model decaying quantum turbulence in two-dimensional disk-shaped Bose-Einstein conden...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
In this work the relaxation of a two-dimensional Bose-gas from a non-equilibrium initial condition ...