We present finite-element numerical algorithms for the identification of vortices in quantum fluids described by a macroscopic complex wave function. Their implementation using the free software FreeFem++ is distributed with this paper as a post-processing toolbox that can be used to analyse numerical or experimental data. Applications for Bose-Einstein condensates (BEC) and superfluid helium flows are presented. Programs are tested and validated using either numerical data obtained by solving the Gross-Pitaevskii equation or experimental images of rotating BEC. Vortex positions are computed as topological defects (zeros) of the wave function when numerical data are used. For experimental images, we compute vortex positions as local minima ...
This paper is concerned with the numerical investigation of Quantum Turbulence (QT) described by the...
The presence of quantized vortices and a high level of control over trap geometries and other system...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
International audienceWe present finite-element numerical algorithms for the identification of vorti...
The dynamics of vortex solitons is studied in a BEC superfluid. A quantum lattice-gas algorithm (mea...
The dynamics of vortex solitons is studied in a BEC superfluid. A quantum lattice-gas algorithm (mea...
Since the description of the condensation of a boson gas cooled to 0K by Bose and Einstein in the fi...
We present an accurate and robust numerical method to track quantized vortex lines in a superfluid d...
We present an accurate and robust numerical method to track quantized vortex lines in a superfluid d...
Liquid helium obtains superfluid properties when cooled below the Lambda transition temperature of 2...
Depuis la description de la condensation d'un gaz de boson refroidit à 0K par Bose puis Einstein au ...
Bose-Einstein condensates (BECs), with their superfluid behavior, quantized vortices, and high-level...
to appear in J. Computational PhysicsNumerical computations of stationary states of fast-rotating Bo...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
Quantum vortices in atomic Bose-Einstein condensates (BECs) are topological defects characterized by...
This paper is concerned with the numerical investigation of Quantum Turbulence (QT) described by the...
The presence of quantized vortices and a high level of control over trap geometries and other system...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
International audienceWe present finite-element numerical algorithms for the identification of vorti...
The dynamics of vortex solitons is studied in a BEC superfluid. A quantum lattice-gas algorithm (mea...
The dynamics of vortex solitons is studied in a BEC superfluid. A quantum lattice-gas algorithm (mea...
Since the description of the condensation of a boson gas cooled to 0K by Bose and Einstein in the fi...
We present an accurate and robust numerical method to track quantized vortex lines in a superfluid d...
We present an accurate and robust numerical method to track quantized vortex lines in a superfluid d...
Liquid helium obtains superfluid properties when cooled below the Lambda transition temperature of 2...
Depuis la description de la condensation d'un gaz de boson refroidit à 0K par Bose puis Einstein au ...
Bose-Einstein condensates (BECs), with their superfluid behavior, quantized vortices, and high-level...
to appear in J. Computational PhysicsNumerical computations of stationary states of fast-rotating Bo...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
Quantum vortices in atomic Bose-Einstein condensates (BECs) are topological defects characterized by...
This paper is concerned with the numerical investigation of Quantum Turbulence (QT) described by the...
The presence of quantized vortices and a high level of control over trap geometries and other system...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...