We have measured directly the Andreev scattering of a controllable beam of quasiparticle excitations by a localized tangle of quantum vortices in superfluid He-3-B at low temperatures. We present a microscopic description of the Andreev scattering from a vortex line allowing us to estimate the vortex separation scale in a dilute tangle of vortices, providing a better comparison of the observed decay time of the turbulence with recent numerical simulations. The experiments also suggest that below 200 muK we reach the low temperature limit for turbulent dynamics
We have made the surprising discovery that the thermal damping of a vibrating wire resonator in supe...
Andreev reflection of thermal quasiparticles from quantized vortices is an important technique to vi...
We have measured the onset of quantum turbulence generated by a vibrating grid resonator in He-3-B. ...
A beam of quasiparticles from a black-body radiator is directed at a localized region of quantum tur...
Superfluid He3−B in the zero-temperature limit offers a unique means of studying quantum turbulence ...
We present a combined numerical and experimental study of Andreev scattering from quantum turbulence...
We describe measurements of the decay of quantum turbulence produced by a vibrating grid in superflu...
We present preliminary measurements of Andreev scattering of quasiparticles from turbulence in the B...
One of the experimental techniques developed to measure quantum turbulence at low temperatures in 3H...
Andreev reflection of quasiparticle excitations provides a sensitive and passive probe of flow in su...
Over the past few years, the experimental study of superfluid turbulence has made very significant, ...
We describe the first direct observations of turbulence in super-fluid He-3-B. The turbulence is gen...
Turbulence in classical fluids has far-reaching technological implications but is poorly understood....
We describe the first measurements of line-density fluctuations and spatial correlations of quantum ...
We describe measurements of the decay of pure superfluid turbulence in superfluid He-3-B, in the low...
We have made the surprising discovery that the thermal damping of a vibrating wire resonator in supe...
Andreev reflection of thermal quasiparticles from quantized vortices is an important technique to vi...
We have measured the onset of quantum turbulence generated by a vibrating grid resonator in He-3-B. ...
A beam of quasiparticles from a black-body radiator is directed at a localized region of quantum tur...
Superfluid He3−B in the zero-temperature limit offers a unique means of studying quantum turbulence ...
We present a combined numerical and experimental study of Andreev scattering from quantum turbulence...
We describe measurements of the decay of quantum turbulence produced by a vibrating grid in superflu...
We present preliminary measurements of Andreev scattering of quasiparticles from turbulence in the B...
One of the experimental techniques developed to measure quantum turbulence at low temperatures in 3H...
Andreev reflection of quasiparticle excitations provides a sensitive and passive probe of flow in su...
Over the past few years, the experimental study of superfluid turbulence has made very significant, ...
We describe the first direct observations of turbulence in super-fluid He-3-B. The turbulence is gen...
Turbulence in classical fluids has far-reaching technological implications but is poorly understood....
We describe the first measurements of line-density fluctuations and spatial correlations of quantum ...
We describe measurements of the decay of pure superfluid turbulence in superfluid He-3-B, in the low...
We have made the surprising discovery that the thermal damping of a vibrating wire resonator in supe...
Andreev reflection of thermal quasiparticles from quantized vortices is an important technique to vi...
We have measured the onset of quantum turbulence generated by a vibrating grid resonator in He-3-B. ...