Kelvin waves (kelvons), the distortion waves on vortex lines, play a key part in the relaxation of superfluid turbulence at low temperatures. We present a weak-turbulence theory of kelvons. We show that nontrivial kinetics arises only beyond the local-induction approximation and is governed by three-kelvon collisions; a corresponding kinetic equation is derived. We prove the existence of Kolmogorov cascade and find its spectrum. The qualitative analysis is corroborated by numeric study of the kinetic equation. The application of the results to the theory of superfluid turbulence is discussed
We derive a type of kinetic equation for Kelvin waves on quantized vortex filaments with random larg...
We study two different types of simplified models for Kelvin wave turbulence on quantized vortex lin...
International audienceThe turbulence of a superfluid is investigated by direct numerical simulations...
Kelvin waves (kelvons), the distortion waves on vortex lines, play a key part in the relaxation of s...
We present a decay scenario of superfluid turbulence (ST)—structured or non-structured tangle of qua...
As long as vorticity quantization remains irrelevant for long-wave physics, superfluid turbulence su...
A Kolmogorov-type cascade of Kelvin waves—the distortion waves on vortex lines—plays a key part in t...
On the basis of a recently proposed scenario of the transformation of the Kolmogorov cascade into th...
The physics of small-scale quantum turbulence in superfluids is essentially based on knowledge of th...
We argue that the physics of interacting Kelvin Waves (KWs) is highly nontrivial and cannot be under...
We study the statistical and dynamical behavior of turbulent Kelvin waves propagating on quantized v...
The small-scale energy-transfer mechanism in zero-temperature superfluid turbulence of helium-4 is s...
To explain the observed decay of superfluid turbulence at very low temperature, it has been proposed...
We derive a type of kinetic equation for Kelvin waves on quantized vortex filaments with random larg...
We study two different types of simplified models for Kelvin wave turbulence on quantized vortex lin...
International audienceThe turbulence of a superfluid is investigated by direct numerical simulations...
Kelvin waves (kelvons), the distortion waves on vortex lines, play a key part in the relaxation of s...
We present a decay scenario of superfluid turbulence (ST)—structured or non-structured tangle of qua...
As long as vorticity quantization remains irrelevant for long-wave physics, superfluid turbulence su...
A Kolmogorov-type cascade of Kelvin waves—the distortion waves on vortex lines—plays a key part in t...
On the basis of a recently proposed scenario of the transformation of the Kolmogorov cascade into th...
The physics of small-scale quantum turbulence in superfluids is essentially based on knowledge of th...
We argue that the physics of interacting Kelvin Waves (KWs) is highly nontrivial and cannot be under...
We study the statistical and dynamical behavior of turbulent Kelvin waves propagating on quantized v...
The small-scale energy-transfer mechanism in zero-temperature superfluid turbulence of helium-4 is s...
To explain the observed decay of superfluid turbulence at very low temperature, it has been proposed...
We derive a type of kinetic equation for Kelvin waves on quantized vortex filaments with random larg...
We study two different types of simplified models for Kelvin wave turbulence on quantized vortex lin...
International audienceThe turbulence of a superfluid is investigated by direct numerical simulations...