Theory of the vortex-clustering transition in a confined two-dimensional quantum fluid
arXiv:1512.05517 · doi:10.1103/PhysRevA.94.023602
Abstract
Clustering of like-sign vortices in a planar bounded domain is known to occur at negative temperature, a phenomenon that Onsager demonstrated to be a consequence of bounded phase space. In a confined superfluid, quantized vortices can support such an ordered phase, provided they evolve as an almost isolated subsystem containing sufficient energy. A detailed theoretical understanding of the statistical mechanics of such states thus requires a microcanonical approach. Here we develop an analytical theory of the vortex clustering transition in a neutral system of quantum vortices confined to a two-dimensional disk geometry, within the microcanonical ensemble. As the system energy increases above a critical value, the system develops global order via the emergence of a macroscopic dipole structure from the homogeneous phase of vortices, spontaneously breaking the Z2 symmetry associated with invariance under vortex circulation exchange, and the rotational SO(2) symmetry due to the disk geometry. The dipole structure emerges characterized by the continuous growth of the macroscopic dipole moment which serves as a global order parameter, resembling a continuous phase transition. The critical temperature of the transition, and the critical exponent associated with the dipole moment, are obtained exactly within mean-field theory. The clustering transition is shown to be distinct from the final state reached at high energy, known as supercondensation. The dipole moment develops via two macroscopic vortex clusters and the cluster locations are found analytically, both near the clustering transition and in the supercondensation limit. The microcanonical theory shows excellent agreement with Monte Carlo simulations, and signatures of the transition are apparent even for a modest system of 100 vortices, accessible in current Bose-Einstein condensate experiments.
11 pages, 3 figures, published version
References in corpus (21)
- Quantised Vortices in an Exciton-Polariton Fluid
- Experimental demonstration of painting arbitrary and dynamic potentials for Bose-Einstein condensates
- Negative Absolute Temperature for Motional Degrees of Freedom
- Prethermalization and universal dynamics in near-integrable quantum systems
- Relaxation of superfluid turbulence in highly oblate Bose-Einstein condensates
- Inverse Energy Cascade in Forced 2D Quantum Turbulence
- Spin gradient demagnetization cooling of ultracold atoms
- Energy spectra of vortex distributions in two-dimensional quantum turbulence
- Emergence of order from turbulence in an isolated planar superfluid
- Identifying a superfluid Reynolds number via dynamical similarity
- Periodic shedding of vortex dipoles from a moving penetrable obstacle in a Bose-Einstein condensate
- In situ imaging of vortices in Bose-Einstein condensates
- Laser cooling and control of excitations in superfluid helium
- Spectral energy transport in two-dimensional quantum vortex dynamics
- Generation and Decay of Two-Dimensional Quantum Turbulence in a Trapped Bose-Einstein Condensate
- Power Spectral Analysis of Jupiter's Clouds and Kinetic Energy from Cassini
- Thermal friction on quantum vortices in a Bose-Einstein condensate
- Sound-induced vortex interactions in a zero-temperature two-dimensional superfluid
- Vortex clustering and universal scaling laws in two-dimensional quantum turbulence
- Vortex gyroscope imaging of planar superfluids
- Velocity statistics for non-uniform configurations of point vortices
Cited by in corpus (25)
- Giant Vortex Clusters in a Two-Dimensional Quantum Fluid
- Numerical Studies of Quantum Turbulence
- Strongly anomalous non-thermal fixed point in a quenched two-dimensional Bose gas
- Emergent Non-Eulerian Hydrodynamics of Quantum Vortices in Two Dimensions
- Turbulent relaxation to equilibrium in a two-dimensional quantum vortex gas
- Vortex Thermometry for Turbulent Two-Dimensional Fluids
- The true mechanism of spontaneous order from turbulence in two-dimensional superfluid manifolds
- Einstein-Bose condensation of Onsager vortices
- Enstrophy Cascade in Decaying Two-Dimensional Quantum Turbulence
- Decaying quantum turbulence in a two-dimensional Bose-Einstein condensate at finite temperature
- Universal expansion of vortex clusters in a dissipative two-dimensional superfluid
- Origin of the inverse energy cascade in two-dimensional quantum turbulence
- Vortex formation and quantum turbulence with rotating paddle potentials in a two-dimensional binary Bose-Einstein condensate
- Phase separation of quantized vortices in two-component miscible Bose-Einstein condensates in a two-dimensional box potential
- Hydrodynamics of Quantum Vortices on a Closed Surface
- Snell's Law for a vortex dipole in a Bose-Einstein condensate
- Onsager vortex formation in two-component Bose-Einstein condensates
- Chiral Edge Modes in Helmholtz-Onsager Vortex Systems
- Neutral vortex necklace in a trapped planar superfluid
- Intermittency of three-dimensional perturbations in a point-vortex model
- Kelvin waves in nonequilibrium universal dynamics of relativistic scalar field theories
- Axis-symmetric Onsager Clustered States of Point Vortices in a Bounded Domain
- Energy spectra and fluxes of two-dimensional turbulent quantum droplets
- Annihilation and recurrence of vortex-antivortex pairs in two-component Bose-Einstein condensates
- Onsager vortex clusters on a sphere