We carry out extensive direct numerical simulations to investigate the interaction of active particles and fields in the two-dimensional Gross-Pitaevskii superfluid, in both simple and turbulent flows. The particles are active in the sense that they affect the superfluid even as they are affected by it. We tune the mass of the particles, which is an important control parameter. At the one-particle level, we show how light, neutral, and heavy particles move in the superfluid, when a constant external force acts on them; in particular, beyond a critical velocity, at which a vortex-antivortex pair is emitted, particle motion can be periodic or chaotic. We demonstrate that the interaction of a particle with vortices leads to dynamics that depen...
Superfluid condensates are known to occur in contexts ranging from laboratory liquid helium to neutr...
The flow of superfluid around a translationally oscillating sphere, levitating without mechanical su...
Numerical studies [1, 2] show that the influence of gravity and turbulence on the motion of small an...
We carry out extensive direct numerical simulations to investigate the interaction of active particl...
We study the dynamics of active particles in two-dimensional superfluids at temperature $T=0$, for a...
A model of a viscous vortex pair, based on a solution of the Stokes equation, is applied for studyin...
Fluid turbulence remains an open problem in contemporary physics. In gases or liquids encountered in...
A comprehensive overview of the basic principles of vortex dynamics in superfluids, this book addres...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
Abstract We report an experimental study of the 2D dynamics of active particles driven by quantum vo...
Experimentalists use particles as tracers in liquid helium. The intrusive effects of particles on th...
Particles suspended in turbulent fluid flows are common in Nature and in technological applications....
In this thesis we demonstrate the power of the Gross-Pitaevskii and the time-dependent Ginzburg-Land...
Thermal counterflow of superfluid He is investigated experimentally, by employing the particle track...
Adding energy to a system through transient stirring usually leads to more disorder. In contrast, po...
Superfluid condensates are known to occur in contexts ranging from laboratory liquid helium to neutr...
The flow of superfluid around a translationally oscillating sphere, levitating without mechanical su...
Numerical studies [1, 2] show that the influence of gravity and turbulence on the motion of small an...
We carry out extensive direct numerical simulations to investigate the interaction of active particl...
We study the dynamics of active particles in two-dimensional superfluids at temperature $T=0$, for a...
A model of a viscous vortex pair, based on a solution of the Stokes equation, is applied for studyin...
Fluid turbulence remains an open problem in contemporary physics. In gases or liquids encountered in...
A comprehensive overview of the basic principles of vortex dynamics in superfluids, this book addres...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
Abstract We report an experimental study of the 2D dynamics of active particles driven by quantum vo...
Experimentalists use particles as tracers in liquid helium. The intrusive effects of particles on th...
Particles suspended in turbulent fluid flows are common in Nature and in technological applications....
In this thesis we demonstrate the power of the Gross-Pitaevskii and the time-dependent Ginzburg-Land...
Thermal counterflow of superfluid He is investigated experimentally, by employing the particle track...
Adding energy to a system through transient stirring usually leads to more disorder. In contrast, po...
Superfluid condensates are known to occur in contexts ranging from laboratory liquid helium to neutr...
The flow of superfluid around a translationally oscillating sphere, levitating without mechanical su...
Numerical studies [1, 2] show that the influence of gravity and turbulence on the motion of small an...