By assuming a self-similar structure for Kelvin waves along vortex loops with successive smaller scale features, we model the fractal dimension of a superfluid vortex tangle in the zero temperature limit. Our model assumes that at each step the total energy of the vortices is conserved, but the total length can change. We obtain a relation between the fractal dimension and the exponent describing how the vortex energy per unit length changes with the length scale. This relation does not depend on the specific model, and shows that if smaller length scales make a decreasing relative contribution to the energy per unit length of vortex lines, the fractal dimension will be higher than unity. Finally, for the sake of more concrete illustrati...
A Kolmogorov-type cascade of Kelvin waves—the distortion waves on vortex lines—plays a key part in t...
The development and decay of a turbulent vortex tangle driven by the Gross-Pitaevskii equation is st...
Incompressible, homogeneous and isotropic turbulence is studied by solving the Navier-Stokes equatio...
By assuming a self-similar structure for Kelvin waves along vortex loops with successive smaller sca...
This paper deals with the fractal dimension of a superuid vortex tangle. It extends a previous model...
This paper deals with the fractal dimension of a superfluid vortex tangle. It extends a previous mo...
To explain the observed decay of superfluid turbulence at very low temperature, it has been proposed...
We present a decay scenario of superfluid turbulence (ST)—structured or non-structured tangle of qua...
We revise the theory of superfluid turbulence near the absolute zero of temperature and suggest a di...
Kelvin waves propagating on quantum vortices play a crucial role in the phenomenology of energy diss...
Reconnections of quantum vortex filaments create sharp bends, which degenerate into propagating Kelv...
The physics of small-scale quantum turbulence in superfluids is essentially based on knowledge of th...
We employ a model of fully structured decaying turbulence consisting of unconstrained, reconnecting ...
As long as vorticity quantization remains irrelevant for long-wave physics, superfluid turbulence su...
A novel investigation of the nature of intermittency in incompressible, homogeneous, and isotropic t...
A Kolmogorov-type cascade of Kelvin waves—the distortion waves on vortex lines—plays a key part in t...
The development and decay of a turbulent vortex tangle driven by the Gross-Pitaevskii equation is st...
Incompressible, homogeneous and isotropic turbulence is studied by solving the Navier-Stokes equatio...
By assuming a self-similar structure for Kelvin waves along vortex loops with successive smaller sca...
This paper deals with the fractal dimension of a superuid vortex tangle. It extends a previous model...
This paper deals with the fractal dimension of a superfluid vortex tangle. It extends a previous mo...
To explain the observed decay of superfluid turbulence at very low temperature, it has been proposed...
We present a decay scenario of superfluid turbulence (ST)—structured or non-structured tangle of qua...
We revise the theory of superfluid turbulence near the absolute zero of temperature and suggest a di...
Kelvin waves propagating on quantum vortices play a crucial role in the phenomenology of energy diss...
Reconnections of quantum vortex filaments create sharp bends, which degenerate into propagating Kelv...
The physics of small-scale quantum turbulence in superfluids is essentially based on knowledge of th...
We employ a model of fully structured decaying turbulence consisting of unconstrained, reconnecting ...
As long as vorticity quantization remains irrelevant for long-wave physics, superfluid turbulence su...
A novel investigation of the nature of intermittency in incompressible, homogeneous, and isotropic t...
A Kolmogorov-type cascade of Kelvin waves—the distortion waves on vortex lines—plays a key part in t...
The development and decay of a turbulent vortex tangle driven by the Gross-Pitaevskii equation is st...
Incompressible, homogeneous and isotropic turbulence is studied by solving the Navier-Stokes equatio...