We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation dynamics of a two-dimensional chiral vortex gas. Same-sign vortices are injected into a quasi-two-dimensional disk-shaped atomic Bose-Einstein condensate using a range of mechanical stirring protocols. The resulting long-time vortex distributions are found to be in excellent agreement with the mean-field Poisson-Boltzmann equation for the system describing the microcanonical ensemble at fixed energy H and angular momentum M. The equilibrium states are characterized by the corresponding thermodynamic variables of inverse temperature β and rotation frequency ω. We are able to realize equilibria spanning the full phase diagram of the vortex gas, ...
It has been observed empirically that two-dimensional vortices tend to cluster, forming a giant vort...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
Recent experiments at the University of Arizona have demonstrated superb control and imaging of flat...
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 dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bo...
In this work the relaxation of a two-dimensional Bose-gas from a non-equilibrium initial condition ...
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...
We study the dynamics and statistical mechanical equilibria of a neutral two-dimensional point vorte...
We study the dynamics and statistical mechanical equilibria of a neutral two-dimensional point vorte...
Despite the prominence of Onsager's point-vortex model as a statistical description of 2D classical ...
Despite the prominence of Onsager’s point-vortex model as a statistical description of 2D classical ...
We introduce a new method of statistical analysis to characterize the dynamics of turbulent fluids i...
We study the relaxation dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bo...
It has been observed empirically that two-dimensional vortices tend to cluster, forming a giant vort...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
Recent experiments at the University of Arizona have demonstrated superb control and imaging of flat...
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 dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bo...
In this work the relaxation of a two-dimensional Bose-gas from a non-equilibrium initial condition ...
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...
We study the dynamics and statistical mechanical equilibria of a neutral two-dimensional point vorte...
We study the dynamics and statistical mechanical equilibria of a neutral two-dimensional point vorte...
Despite the prominence of Onsager's point-vortex model as a statistical description of 2D classical ...
Despite the prominence of Onsager’s point-vortex model as a statistical description of 2D classical ...
We introduce a new method of statistical analysis to characterize the dynamics of turbulent fluids i...
We study the relaxation dynamics of an isolated zero temperature quasi-two-dimensional superfluid Bo...
It has been observed empirically that two-dimensional vortices tend to cluster, forming a giant vort...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
Recent experiments at the University of Arizona have demonstrated superb control and imaging of flat...