The design and construction of a superconducting magnet system for a high-resolution neutron spin echo spectrometer. The principal solution for the field shape of optimal precession magnets is B0 cos2(¿z/L). In practical precession magnets, this field shape is approximated by 30 superimposed concentric solenoids with a bore of 80 mm. The required field integral of 1 Tm, providing 104 precession turns, is achieved in a magnet with a length of about 1.5 m. The field in the center is 1.5 T maximum. The relative line integral inhomogeneity of about 10-3 obtained with such a coil is improved to less than 10-6 by two in-beam correction coils. The advanced homogeneity level means that after 10000 precession turns the precession angle remains still...
A magnetic coil operated at cryogenic temperatures is used to produce spatial, relative field gradie...
Neutron spin-echo spectrometers (NSE) are the neutron scattering instruments with the highest availa...
The neutron spin is a critical degree of freedom for many precision measurements using low-energy ne...
The required field shape of optimal Larmor precession magnets to obtain the bestpossible homogeneity...
The ultimate energy resolution in inelastic thermal neutron scattering spectroscopy is provided by n...
A Neutron spin-echo spectrometer (NSE) of the next generation will be build for the Spallation Neutr...
A Neutron spin-echo (NSE) spectrometer of the next generation is under construction at the Spallatio...
A novel set of superconducting main precession coils has been built and installed in the Jülich-neut...
Spectroscopic techniques based on Larmor precession of particle spins require that for all trajector...
Neutron Spin Echo methods (NSE) use Larmor labelling to measure the precession phase of the neutron ...
This paper describes the design and experimental tests of a novel neutron spin analyzer optimized f...
Abstract: The current state of the implementation of the project for building a spin-echo instrument...
It has long been proposed that spin dressing could be employed to realize a highly effective helium-...
Since 1968 Oxford Instruments has been at the forefront of the manufacture of not only reliable high...
In high-resolution nuclear magnetic resonance (NMR-) spectroscopy superconducting coils are used to ...
A magnetic coil operated at cryogenic temperatures is used to produce spatial, relative field gradie...
Neutron spin-echo spectrometers (NSE) are the neutron scattering instruments with the highest availa...
The neutron spin is a critical degree of freedom for many precision measurements using low-energy ne...
The required field shape of optimal Larmor precession magnets to obtain the bestpossible homogeneity...
The ultimate energy resolution in inelastic thermal neutron scattering spectroscopy is provided by n...
A Neutron spin-echo spectrometer (NSE) of the next generation will be build for the Spallation Neutr...
A Neutron spin-echo (NSE) spectrometer of the next generation is under construction at the Spallatio...
A novel set of superconducting main precession coils has been built and installed in the Jülich-neut...
Spectroscopic techniques based on Larmor precession of particle spins require that for all trajector...
Neutron Spin Echo methods (NSE) use Larmor labelling to measure the precession phase of the neutron ...
This paper describes the design and experimental tests of a novel neutron spin analyzer optimized f...
Abstract: The current state of the implementation of the project for building a spin-echo instrument...
It has long been proposed that spin dressing could be employed to realize a highly effective helium-...
Since 1968 Oxford Instruments has been at the forefront of the manufacture of not only reliable high...
In high-resolution nuclear magnetic resonance (NMR-) spectroscopy superconducting coils are used to ...
A magnetic coil operated at cryogenic temperatures is used to produce spatial, relative field gradie...
Neutron spin-echo spectrometers (NSE) are the neutron scattering instruments with the highest availa...
The neutron spin is a critical degree of freedom for many precision measurements using low-energy ne...