There are two stable isotopes of helium: helium-3 and helium-4. Both exhibit superfluidity at low temperatures, helium-3 at around 1 mK. The superfluidity brings some special features to the fluid, such as the possibility of frictionless mass flow and quantization of flow through vortex lines. This thesis consists of experiments performed on superfluid helium-3 under rotation, and on the vortex lines the rotation induces. The cylindrical sample is probed using nuclear magnetic resonance (NMR) and there is a possibility to stabilize two superfluid phases, the A phase and the B phase, simultaneously in the sample. We study two aspects: the dynamics of the phase boundary between the A and the B phases, and turbulent vortex dynamics in the B ph...
We discuss the energy and vorticity spectra of turbulent superfluid 4He in the entire temperature ra...
In this thesis, we use mechanical oscillators to induce fluid flow in the superfluid 3He in order to...
In this thesis, we use mechanical oscillators to induce fluid flow in the superfluid 3He in order to...
There are two stable isotopes of helium: helium-3 and helium-4. Both exhibit superfluidity at low te...
This doctoral thesis consists of experimental studies on rotating superfluid helium-3 at millikelvin...
This thesis reports numerical calculations on quantized vortices in 4He and 3He superfluids. Vortice...
This doctoral thesis consists of experimental studies on rotating superfluid helium-3 at millikelvin...
Superfluid He-3 is an ideal system for testing ideas in other areas of physics. The superfluid at lo...
This thesis reports numerical calculations on quantized vortices in 4He and 3He superfluids. Vortice...
Abstract In this thesis, the structure and the dynamics of vortices are studied from the standpoint ...
This thesis describes experiments conducted on B phase 3He in the μK temperature regime to investiga...
Most collective physical systems freeze and become immobile at zero temperature. Thus, there exist f...
Liquid helium obtains superfluid properties when cooled below the Lambda transition temperature of 2...
The less common helium isotope, 3He, becomes superfluid when the temperature falls below 1 mK. Super...
We study the lattice structure and dynamics of the quantized vortices in superfluid helium-4 using a...
We discuss the energy and vorticity spectra of turbulent superfluid 4He in the entire temperature ra...
In this thesis, we use mechanical oscillators to induce fluid flow in the superfluid 3He in order to...
In this thesis, we use mechanical oscillators to induce fluid flow in the superfluid 3He in order to...
There are two stable isotopes of helium: helium-3 and helium-4. Both exhibit superfluidity at low te...
This doctoral thesis consists of experimental studies on rotating superfluid helium-3 at millikelvin...
This thesis reports numerical calculations on quantized vortices in 4He and 3He superfluids. Vortice...
This doctoral thesis consists of experimental studies on rotating superfluid helium-3 at millikelvin...
Superfluid He-3 is an ideal system for testing ideas in other areas of physics. The superfluid at lo...
This thesis reports numerical calculations on quantized vortices in 4He and 3He superfluids. Vortice...
Abstract In this thesis, the structure and the dynamics of vortices are studied from the standpoint ...
This thesis describes experiments conducted on B phase 3He in the μK temperature regime to investiga...
Most collective physical systems freeze and become immobile at zero temperature. Thus, there exist f...
Liquid helium obtains superfluid properties when cooled below the Lambda transition temperature of 2...
The less common helium isotope, 3He, becomes superfluid when the temperature falls below 1 mK. Super...
We study the lattice structure and dynamics of the quantized vortices in superfluid helium-4 using a...
We discuss the energy and vorticity spectra of turbulent superfluid 4He in the entire temperature ra...
In this thesis, we use mechanical oscillators to induce fluid flow in the superfluid 3He in order to...
In this thesis, we use mechanical oscillators to induce fluid flow in the superfluid 3He in order to...