Turbulence in classical fluids has far-reaching technological implications but is poorly understood. A better understanding might be gained from studying turbulence in quantum systems. In a pure superfluid (at low temperatures), there is no viscosity and vortex lines are quantised. Quantum turbulence consists of a tangle of quantised vortex lines which interact via their self-induced flow. We have recently developed techniques for detecting vortices in superfluid He-3-B in the low temperature limit. We find that the transition to turbulence from a moving grid occurs by the entanglement of emitted vortex rings. Here, we discuss the propagation of the ballistic vortex rings emitted at low grid velocities. We have measured the temperature at w...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
Recently we have found that a vibrating wire resonator produces turbulence in superfluid He-3-B at l...
Superfluid 4He behaves like an irrotational ideal fluid, whose characteristic phenomena can be expla...
We report a transition in the vorticity generated by a grid moving in the B phase of superfluid He-3...
We describe measurements of the decay of quantum turbulence produced by a vibrating grid in superflu...
We have measured directly the Andreev scattering of a controllable beam of quasiparticle excitations...
We describe measurements of the decay of pure superfluid turbulence in superfluid He-3-B, in the low...
Andreev reflection of quasiparticle excitations provides a sensitive and passive probe of flow in su...
We have measured the onset of quantum turbulence generated by a vibrating grid resonator in He-3-B. ...
Over the past few years, the experimental study of superfluid turbulence has made very significant, ...
We describe the first measurements of line-density fluctuations and spatial correlations of quantum ...
We describe the first direct observations of turbulence in super-fluid He-3-B. The turbulence is gen...
This thesis describes experiments conducted in 3He-B to investigate the properties of quantum turbul...
Superfluid He3−B in the zero-temperature limit offers a unique means of studying quantum turbulence ...
Destroying superfluidity is a fundamental process and in fermionic superfluid such as He3-B it split...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
Recently we have found that a vibrating wire resonator produces turbulence in superfluid He-3-B at l...
Superfluid 4He behaves like an irrotational ideal fluid, whose characteristic phenomena can be expla...
We report a transition in the vorticity generated by a grid moving in the B phase of superfluid He-3...
We describe measurements of the decay of quantum turbulence produced by a vibrating grid in superflu...
We have measured directly the Andreev scattering of a controllable beam of quasiparticle excitations...
We describe measurements of the decay of pure superfluid turbulence in superfluid He-3-B, in the low...
Andreev reflection of quasiparticle excitations provides a sensitive and passive probe of flow in su...
We have measured the onset of quantum turbulence generated by a vibrating grid resonator in He-3-B. ...
Over the past few years, the experimental study of superfluid turbulence has made very significant, ...
We describe the first measurements of line-density fluctuations and spatial correlations of quantum ...
We describe the first direct observations of turbulence in super-fluid He-3-B. The turbulence is gen...
This thesis describes experiments conducted in 3He-B to investigate the properties of quantum turbul...
Superfluid He3−B in the zero-temperature limit offers a unique means of studying quantum turbulence ...
Destroying superfluidity is a fundamental process and in fermionic superfluid such as He3-B it split...
A zero-temperature superfluid is arguably the simplest system in which to study complex fluid dynami...
Recently we have found that a vibrating wire resonator produces turbulence in superfluid He-3-B at l...
Superfluid 4He behaves like an irrotational ideal fluid, whose characteristic phenomena can be expla...