The study of vortex reconnections is an essential ingredient of understanding superfluid turbulence, a phenomenon recently also reported in trapped atomic Bose-Einstein condensates. In this work we show that, despite the established dependence of vortex motion on temperature in such systems, vortex reconnections are actually temperature independent on the typical length and time scales of atomic condensates. Our work is based on a dissipative Gross-Pitaevskii equation for the condensate, coupled to a semiclassical Boltzmann equation for the thermal cloud (the Zaremba-Nikuni-Griffin formalism). Comparison to vortex reconnections in homogeneous condensates further shows reconnections to be insensitive to the inhomogeneity in the background de...
We numerically model decaying quantum turbulence in two-dimensional disk-shaped Bose-Einstein conden...
We study the dynamics of a single and a pair of vortices in quasi two-dimensional Bose-Einstein cond...
We investigate thermal relaxation of superfluid turbulence in a highly oblate Bose-Einstein condensa...
Vortex reconnections plays an important role in the turbulent flows associated with the superfluids....
International audienceQuantum vortex reconnections can be considered as a fundamental unit of intera...
Quantum vortex reconnections can be considered as a fundamental unit of interaction in complex turbu...
In this paper, we examine the dynamical properties of vortices in atomic Bose-Einstein condensates i...
We have performed numerical simulations of various vortex configurations in a trapped BoseEinstein c...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
Considering a moving vortex line in a dilute atomic Bose-Einstein condensate within time-dependent H...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We study reconnections of quantum vortices by numerically solving the governing Gross-Pitaevskii equ...
We study the dynamics of a single vortex and a pair of vortices in quasi two-dimensional Bose-Einste...
We investigate the dissipative dynamics of a corotating vortex pair in a highly oblate axisymmetric ...
We numerically model turbulence in a trapped atomic Bose-Einstein condensate by solving the Gross-Pi...
We numerically model decaying quantum turbulence in two-dimensional disk-shaped Bose-Einstein conden...
We study the dynamics of a single and a pair of vortices in quasi two-dimensional Bose-Einstein cond...
We investigate thermal relaxation of superfluid turbulence in a highly oblate Bose-Einstein condensa...
Vortex reconnections plays an important role in the turbulent flows associated with the superfluids....
International audienceQuantum vortex reconnections can be considered as a fundamental unit of intera...
Quantum vortex reconnections can be considered as a fundamental unit of interaction in complex turbu...
In this paper, we examine the dynamical properties of vortices in atomic Bose-Einstein condensates i...
We have performed numerical simulations of various vortex configurations in a trapped BoseEinstein c...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
Considering a moving vortex line in a dilute atomic Bose-Einstein condensate within time-dependent H...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We study reconnections of quantum vortices by numerically solving the governing Gross-Pitaevskii equ...
We study the dynamics of a single vortex and a pair of vortices in quasi two-dimensional Bose-Einste...
We investigate the dissipative dynamics of a corotating vortex pair in a highly oblate axisymmetric ...
We numerically model turbulence in a trapped atomic Bose-Einstein condensate by solving the Gross-Pi...
We numerically model decaying quantum turbulence in two-dimensional disk-shaped Bose-Einstein conden...
We study the dynamics of a single and a pair of vortices in quasi two-dimensional Bose-Einstein cond...
We investigate thermal relaxation of superfluid turbulence in a highly oblate Bose-Einstein condensa...