The leapfrogging of coaxial vortex rings is a famous effect which has been noticed since the times of Helmholtz. Recent advances in ultra-cold atomic gases show that the effect can now be studied in quantum fluids. The strong confinement which characterises these systems motivates the study of leapfrogging of vortices within narrow channels. Using the two-dimensional point vortex model, we show that in the constrained geometry of a two-dimensional channel the dynamics is richer than in an unbounded domain: alongside the known regimes of standard leapfrogging and the absence of it, we identify new regimes of image-driven leapfrogging and periodic orbits. Moreover, by solving the Gross-Pitaevskii equation for a Bose-Einstein condensate, we sh...
We examine the static and dynamic properties of quantum knots in a Bose-Einstein condensate. In part...
We study the motion of superfluid vortices with filled massive cores. Previous point-vortex models a...
At the very heart of turbulent fluid flows are many interacting vortices that produce a chaotic and ...
The leapfrogging of coaxial vortex rings is a famous effect which has been noticed since the times o...
Two vortex rings can form a localized configuration whereby they continually pass through one anothe...
We study reconnections of quantum vortices by numerically solving the governing Gross-Pitaevskii equ...
A quantum vortex is an excitation of a superfluid that carries angular momentum, in which the superf...
Liquid helium obtains superfluid properties when cooled below the Lambda transition temperature of 2...
Quantum vortices, the quantized version of classical vortices, play a prominent role in superfluid an...
A quantum vortex is an excitation of a superfluid that carries angular momentum, in which the superf...
Turbulence, the irregular motion of fluids, is a challenging problem in physics. Yet some properties...
In a concurrent work, Villois et al. [Phys. Rev. Lett. 125, 164501 (2020)10.1103/PhysRevLett.125.164...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
We statistically study vortex reconnections in quantum fluids by evolving different realizations of ...
A pair of perturbed anti-parallel quantum vortices, simulated using the three-dimensional Gross-Pita...
We examine the static and dynamic properties of quantum knots in a Bose-Einstein condensate. In part...
We study the motion of superfluid vortices with filled massive cores. Previous point-vortex models a...
At the very heart of turbulent fluid flows are many interacting vortices that produce a chaotic and ...
The leapfrogging of coaxial vortex rings is a famous effect which has been noticed since the times o...
Two vortex rings can form a localized configuration whereby they continually pass through one anothe...
We study reconnections of quantum vortices by numerically solving the governing Gross-Pitaevskii equ...
A quantum vortex is an excitation of a superfluid that carries angular momentum, in which the superf...
Liquid helium obtains superfluid properties when cooled below the Lambda transition temperature of 2...
Quantum vortices, the quantized version of classical vortices, play a prominent role in superfluid an...
A quantum vortex is an excitation of a superfluid that carries angular momentum, in which the superf...
Turbulence, the irregular motion of fluids, is a challenging problem in physics. Yet some properties...
In a concurrent work, Villois et al. [Phys. Rev. Lett. 125, 164501 (2020)10.1103/PhysRevLett.125.164...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
We statistically study vortex reconnections in quantum fluids by evolving different realizations of ...
A pair of perturbed anti-parallel quantum vortices, simulated using the three-dimensional Gross-Pita...
We examine the static and dynamic properties of quantum knots in a Bose-Einstein condensate. In part...
We study the motion of superfluid vortices with filled massive cores. Previous point-vortex models a...
At the very heart of turbulent fluid flows are many interacting vortices that produce a chaotic and ...