Low gradient magnetic holding fields are required for maintaining the polarization of polarized 3He, as diffusion though non-ideal gradients can cause total relaxation rates much greater than the intrinsic total 3He relaxation rate of a particular 3He cell in optimal conditions. For neutron scattering applications we often rely on µ-metal cavities to provide a degree of shielding from the many other sources of magnetic fields and gradient experienced on a typical neutron instrument. The JCNS utilizes two concepts for such cavities, one based on inexpensive plastic-bonded magnets to provide magnetic flux, and the other based on field coils wound on the sides of the µ-metal cavity. 2 different sized of permanent magnet cavities and three diff...
The internal structure of the neutron is of current interest in the field of nuclear physics. Presen...
The use of magnetic fields in neutron scattering experimentation is reviewed briefly. Two general ar...
Polarized neutron diffraction (PND) is a powerful method to investigate magnetic structures. PND can...
Abstract3He neutron spin filters require a homogeneous magnetic field, otherwise the nuclear polariz...
Polarized neutrons scattering is an important technology for characterizing magnetic and other mater...
We present novel types of permanently magnetized as well as current powered boxes built from soft-fe...
Many experiments in nuclear and neutron physics are confronted with the problem that they use a supe...
Cesiated cells made out of quartz glass are widely used as vessels for hyperpolarised 3He to be appl...
Several methods of polarized neutron scattering call for a zero magnetic field (ZF) region to reduce...
A new polarized neutron diffraction setup has been developed for the hot neutron single crystal diff...
Neutron scattering with polarization analysis is a powerful tool to determine magnetic structures an...
A magnetic coil operated at cryogenic temperatures is used to produce spatial, relative field gradie...
The classical Lorentz field in a spherical cavity of 4π M s/3 does not occur in a ferromagnetic mate...
The implementation in Julich of He-3 spin filters for neutrons has progressed substantially. Apparat...
AbstractA polarized 3He neutron spin filter requires a suitably homogeneous magnetic environment to ...
The internal structure of the neutron is of current interest in the field of nuclear physics. Presen...
The use of magnetic fields in neutron scattering experimentation is reviewed briefly. Two general ar...
Polarized neutron diffraction (PND) is a powerful method to investigate magnetic structures. PND can...
Abstract3He neutron spin filters require a homogeneous magnetic field, otherwise the nuclear polariz...
Polarized neutrons scattering is an important technology for characterizing magnetic and other mater...
We present novel types of permanently magnetized as well as current powered boxes built from soft-fe...
Many experiments in nuclear and neutron physics are confronted with the problem that they use a supe...
Cesiated cells made out of quartz glass are widely used as vessels for hyperpolarised 3He to be appl...
Several methods of polarized neutron scattering call for a zero magnetic field (ZF) region to reduce...
A new polarized neutron diffraction setup has been developed for the hot neutron single crystal diff...
Neutron scattering with polarization analysis is a powerful tool to determine magnetic structures an...
A magnetic coil operated at cryogenic temperatures is used to produce spatial, relative field gradie...
The classical Lorentz field in a spherical cavity of 4π M s/3 does not occur in a ferromagnetic mate...
The implementation in Julich of He-3 spin filters for neutrons has progressed substantially. Apparat...
AbstractA polarized 3He neutron spin filter requires a suitably homogeneous magnetic environment to ...
The internal structure of the neutron is of current interest in the field of nuclear physics. Presen...
The use of magnetic fields in neutron scattering experimentation is reviewed briefly. Two general ar...
Polarized neutron diffraction (PND) is a powerful method to investigate magnetic structures. PND can...