Fixed typosInternational audienceWhile in classical turbulence helicity depletes nonlinearity and can alter the evolution of turbulent flows, in quantum turbulence its role is not fully understood. We present numerical simulations of the free decay of a helical quantum turbulent flow using the Gross-Pitaevskii equation at high spatial resolution. The evolution has remarkable similarities with classical flows, which go as far as displaying a dual transfer of incompressible kinetic energy and helicity to small scales. Spatio-temporal analysis indicates that both quantities are dissipated at small scales through non-linear excitation of Kelvin waves and the subsequent emission of phonons. At the onset of the decay, the resulting turbulent flow...
We investigate quantum vortex ring dynamics at scales smaller than the inter-vortex spacing in quant...
International audienceWe present numerical evidence of a critical-like transition in an out-of-equil...
By numerically solving the Gross-Piteavskii equation with the energy injection and dissipation, we s...
Fixed typosInternational audienceWhile in classical turbulence helicity depletes nonlinearity and ca...
We present a numerical study of quantum turbulence within the three-dimensional Gross-Pitaevskii equ...
We report evidence for an enstrophy cascade in large-scale point-vortex simulations of decaying two-...
International audienceWe study freely decaying quantum turbulence by performing high-resolution nume...
Identified as a unique regime of fluid flow some 500 years ago, turbulence has fas-cinated and confo...
We perform a study of the evolution of helical quantum turbulence at different temperatures by solvi...
International audienceTo model isotropic homogeneous quantum turbulence in superfluid helium, we hav...
To model isotropic homogeneous quantum turbulence in superfluid helium, we have performed Direct Num...
International audienceThe velocity circulation, a measure of the rotation of a fluid within a closed...
International audienceVelocity measurements in turbulent superfluid helium between co-rotating prope...
Helicity plays an important role in the nonlinear dynamic process of compressible helical turbulence...
We investigate quantum vortex ring dynamics at scales smaller than the inter-vortex spacing in quant...
International audienceWe present numerical evidence of a critical-like transition in an out-of-equil...
By numerically solving the Gross-Piteavskii equation with the energy injection and dissipation, we s...
Fixed typosInternational audienceWhile in classical turbulence helicity depletes nonlinearity and ca...
We present a numerical study of quantum turbulence within the three-dimensional Gross-Pitaevskii equ...
We report evidence for an enstrophy cascade in large-scale point-vortex simulations of decaying two-...
International audienceWe study freely decaying quantum turbulence by performing high-resolution nume...
Identified as a unique regime of fluid flow some 500 years ago, turbulence has fas-cinated and confo...
We perform a study of the evolution of helical quantum turbulence at different temperatures by solvi...
International audienceTo model isotropic homogeneous quantum turbulence in superfluid helium, we hav...
To model isotropic homogeneous quantum turbulence in superfluid helium, we have performed Direct Num...
International audienceThe velocity circulation, a measure of the rotation of a fluid within a closed...
International audienceVelocity measurements in turbulent superfluid helium between co-rotating prope...
Helicity plays an important role in the nonlinear dynamic process of compressible helical turbulence...
We investigate quantum vortex ring dynamics at scales smaller than the inter-vortex spacing in quant...
International audienceWe present numerical evidence of a critical-like transition in an out-of-equil...
By numerically solving the Gross-Piteavskii equation with the energy injection and dissipation, we s...