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- W2066668657 abstract "Optimised Field Shape [1] spin precession coils can be made sufficiently short, so as to be added to existing Three-Axis Spectrometers (TAS) without increasing the neutron flight paths significantly. Furthermore, homogeneity corrections can be applied in such a way as to feature uniform magnetic induction line integrals even for very divergent beams. This way, intense TAS with Spin Echo combinations can be built, the loss of luminosity with respect to the normal polarised mode being negligible. Based on the experience with resistive TAS and Spin Echo spectrometers (TASSE) on PONTA (ISSP) and a superconducting version on IN20 (ILL) used mainly for high momentum transfer quasielastic scattering experiments (μeV–neV resolution), a variety of other applications will be made possible: inelastic scattering from excitations with μeV resolution and very high momentum transfer resolution (10−3 Å−1), a domain until now reserved for synchrotron radiation. The fields of application will include the extension of the accessible momentum transfer region with respect to cold neutron Spin Echo, for example in the study of glass and liquid dynamics phase transitions and slow dynamics in general. The advantage of thermal neutrons as well as of the TAS background spectrometer with a well-defined transmission function will allow addressing new subjects such as excitation lifetimes across the entire Brillouin zone. Dispersive excitations can be ‘ focused’ by the use of gradient coils that allow restoring the echo polarisation blurred by the dispersion. Another application of these gradient coils is improved momentum resolution for elastic scattering that allows TASSE to compete with synchrotron radiation facilities." @default.
- W2066668657 created "2016-06-24" @default.
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- W2066668657 date "1999-09-01" @default.
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- W2066668657 title "Spin echo three-axes spectrometers for improved energy and momentum resolution" @default.
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- W2066668657 doi "https://doi.org/10.1016/s0022-3697(99)00176-6" @default.
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