We demonstrate the existence of localized structures along quantized vortex filaments in superfluid helium under the quantum form of the local induction approximation (LIA), which includes mutual friction and normal fluid effects. For small magnitude normal fluid velocities, the dynamics are dissipative under mutual friction. On the other hand, when normal fluid velocities are sufficiently large, we observe parametric amplification of the localized disturbances along quantized vortex filaments, akin to the Donnelly-Glaberson instability for regular Kelvin waves. As the waves amplify they will eventually cause breakdown of the LIA assumption (and perhaps the vortex filament itself), and we derive a characteristic time for which this breakdow...
In this paper we take into account the dynamical equations of a vortex filament in superfluid helium...
We study the dynamics of helical Kelvin waves moving along a quantum vortex filament driven by a nor...
The study of nonlinear waves along open vortex filaments continues to be an area of active research....
We demonstrate the existence of localized structures along quantized vortex filaments in superfluid ...
We demonstrate the existence of localized structures along quantized vortex filaments in superfluid ...
We demonstrate the existence of localized structures along quantized vortex filaments in superfluid ...
The Hasimoto transformation between the classical LIA (local induction approximation, a model approx...
In a recent paper, we give a study of the purely rotational motion of general stationary states in t...
In a recent paper, we give a study of the purely rotational motion of general stationary states in t...
The Hasimoto transformation between the classical LIA (local induction approximation, a model approx...
We study the dynamics of Kelvin waves along a quantum vortex filament in the presence of mutual fric...
We derive the local induction approximation (LIA) for a quantum vortex filament in the arclength coo...
We derive the local induction approximation (LIA) for a quantum vortex filament in the arclength coo...
We obtain the fully nonlinear local induction equation describing the motion of a vortex filament in...
In this paper we take into account the dynamical equations of a vortex filament in superfluid helium...
In this paper we take into account the dynamical equations of a vortex filament in superfluid helium...
We study the dynamics of helical Kelvin waves moving along a quantum vortex filament driven by a nor...
The study of nonlinear waves along open vortex filaments continues to be an area of active research....
We demonstrate the existence of localized structures along quantized vortex filaments in superfluid ...
We demonstrate the existence of localized structures along quantized vortex filaments in superfluid ...
We demonstrate the existence of localized structures along quantized vortex filaments in superfluid ...
The Hasimoto transformation between the classical LIA (local induction approximation, a model approx...
In a recent paper, we give a study of the purely rotational motion of general stationary states in t...
In a recent paper, we give a study of the purely rotational motion of general stationary states in t...
The Hasimoto transformation between the classical LIA (local induction approximation, a model approx...
We study the dynamics of Kelvin waves along a quantum vortex filament in the presence of mutual fric...
We derive the local induction approximation (LIA) for a quantum vortex filament in the arclength coo...
We derive the local induction approximation (LIA) for a quantum vortex filament in the arclength coo...
We obtain the fully nonlinear local induction equation describing the motion of a vortex filament in...
In this paper we take into account the dynamical equations of a vortex filament in superfluid helium...
In this paper we take into account the dynamical equations of a vortex filament in superfluid helium...
We study the dynamics of helical Kelvin waves moving along a quantum vortex filament driven by a nor...
The study of nonlinear waves along open vortex filaments continues to be an area of active research....