We perform a study of the evolution of helical quantum turbulence at different temperatures by solving numerically the Gross-Pitaevskii and the stochastic Ginzburg-Landau equations, using up to 40963 grid points with a pseudospectral method. We show that for temperatures close to the critical one, the fluid described by these equations can act as a classical viscous flow, with the decay of the incompressible kinetic energy and the helicity becoming exponential. The transition from this behavior to the one observed at zero temperature is smooth as a function of temperature. Moreover, the presence of strong thermal effects can inhibit the development of a proper turbulent cascade. We provide Ansätze for the effective viscosity and friction as...
A mesoscopic model of finite temperature superfluid helium-4 based on coupled Langevin-Navier-Stokes...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
International audienceThe turbulence of a superfluid is investigated by direct numerical simulations...
We study freely decaying quantum turbulence by performing high-resolution numerical simulations of t...
International audienceTo model isotropic homogeneous quantum turbulence in superfluid helium, we hav...
International audienceThe turbulence of superfluid helium is investigated numerically at finite temp...
While in classical turbulence helicity depletes nonlinearity and can alter the evolution of turbulen...
To model isotropic homogeneous quantum turbulence in superfluid helium, we have performed Direct Num...
By numerically solving the Gross-Piteavskii equation with the energy injection and dissipation, we s...
In this thesis several different Fourier Galerkin-truncated conservative systems are studied. It is ...
International audienceThe concept of ''effective viscosity'' $\nueff$ of superfluid helium, widely u...
The theory of how turbulent energy decays via a Richardson cascade is well-established for classical...
International audienceThe turbulent inertial cascade undergone by a quantum fluid at small but finit...
We present a numerical study of finite-temperature superfluid turbulence using the vortex filament m...
We investigate the behaviour of the mutual friction force in finite temperature quantum turbulence i...
A mesoscopic model of finite temperature superfluid helium-4 based on coupled Langevin-Navier-Stokes...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
International audienceThe turbulence of a superfluid is investigated by direct numerical simulations...
We study freely decaying quantum turbulence by performing high-resolution numerical simulations of t...
International audienceTo model isotropic homogeneous quantum turbulence in superfluid helium, we hav...
International audienceThe turbulence of superfluid helium is investigated numerically at finite temp...
While in classical turbulence helicity depletes nonlinearity and can alter the evolution of turbulen...
To model isotropic homogeneous quantum turbulence in superfluid helium, we have performed Direct Num...
By numerically solving the Gross-Piteavskii equation with the energy injection and dissipation, we s...
In this thesis several different Fourier Galerkin-truncated conservative systems are studied. It is ...
International audienceThe concept of ''effective viscosity'' $\nueff$ of superfluid helium, widely u...
The theory of how turbulent energy decays via a Richardson cascade is well-established for classical...
International audienceThe turbulent inertial cascade undergone by a quantum fluid at small but finit...
We present a numerical study of finite-temperature superfluid turbulence using the vortex filament m...
We investigate the behaviour of the mutual friction force in finite temperature quantum turbulence i...
A mesoscopic model of finite temperature superfluid helium-4 based on coupled Langevin-Navier-Stokes...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
International audienceThe turbulence of a superfluid is investigated by direct numerical simulations...