Steady-state turbulent motion is created in superfluid 3He−B at low temperatures in the form of a turbulent vortex front, which moves axially along a rotating cylindrical container of 3He−B and replaces vortex-free flow with vortex lines at constant density. We present the first measurements on the thermal signal from dissipation as a function of time, recorded at 0.2Tc during the front motion, which is monitored using NMR techniques. Both the measurements and the numerical calculations of the vortex dynamics show that at low temperatures the density of the propagating vortices falls well below the equilibrium value, i.e., the superfluid rotates at a smaller angular velocity than the container. This is the first evidence for the decoupling ...
We use neutron absorption in rotating 3He−B to heat locally a ∼100−μm−size volume into normal phase....
There are two stable isotopes of helium: helium-3 and helium-4. Both exhibit superfluidity at low te...
Turbulence in classical fluids has far-reaching technological implications but is poorly understood....
Steady-state turbulent motion is created in superfluid 3He−B at low temperatures in the form of a tu...
Four alternative but topologically different structures of vorticity exist in rotating 3He−A. As a f...
Experiments on rotating superfluid 3He-A in an open cylindrical geometry show a change in the NMR li...
The dynamics of quantized vortices in the zero temperature limit $T \rightarrow 0$ is currently of g...
We measure the response of a rotating sample of superfluid He-B3 to spin-down to rest in the zero-te...
We have investigated the vortex core transition in 3He-B by measuring the associated changes in mutu...
We have investigated the vortex core transition in 3He-B by measuring the associated changes in mutu...
Rotating superfluid He3-B is found to possess a new contribution to the NMR frequency shift, which c...
Superfluids have very peculiar rotational properties as the Hess-Fairbank experiment spectacularly d...
A satellite peak has been observed in the NMR spectrum of rotating He3-A; the peak intensity depends...
A satellite peak has been observed in the NMR spectrum of rotating He3-A; the peak intensity depends...
We use neutron absorption in rotating 3He−B to heat locally a ∼100−μm−size volume into normal phase....
We use neutron absorption in rotating 3He−B to heat locally a ∼100−μm−size volume into normal phase....
There are two stable isotopes of helium: helium-3 and helium-4. Both exhibit superfluidity at low te...
Turbulence in classical fluids has far-reaching technological implications but is poorly understood....
Steady-state turbulent motion is created in superfluid 3He−B at low temperatures in the form of a tu...
Four alternative but topologically different structures of vorticity exist in rotating 3He−A. As a f...
Experiments on rotating superfluid 3He-A in an open cylindrical geometry show a change in the NMR li...
The dynamics of quantized vortices in the zero temperature limit $T \rightarrow 0$ is currently of g...
We measure the response of a rotating sample of superfluid He-B3 to spin-down to rest in the zero-te...
We have investigated the vortex core transition in 3He-B by measuring the associated changes in mutu...
We have investigated the vortex core transition in 3He-B by measuring the associated changes in mutu...
Rotating superfluid He3-B is found to possess a new contribution to the NMR frequency shift, which c...
Superfluids have very peculiar rotational properties as the Hess-Fairbank experiment spectacularly d...
A satellite peak has been observed in the NMR spectrum of rotating He3-A; the peak intensity depends...
A satellite peak has been observed in the NMR spectrum of rotating He3-A; the peak intensity depends...
We use neutron absorption in rotating 3He−B to heat locally a ∼100−μm−size volume into normal phase....
We use neutron absorption in rotating 3He−B to heat locally a ∼100−μm−size volume into normal phase....
There are two stable isotopes of helium: helium-3 and helium-4. Both exhibit superfluidity at low te...
Turbulence in classical fluids has far-reaching technological implications but is poorly understood....