Neutron MIEZE spectroscopy with focal length tuning

Author:

Jochum J KORCID,Wendl A,Keller T,Franz CORCID

Abstract

Abstract We report on a method to tune the focal length of high resolution neutron MIEZE spectrometers. The MIEZE technique relies on a fast sinusoidal neutron intensity modulation up to the MHz range, generated by the rotation of the neutron spin in radio-frequency spin flippers, and subsequent conversion to an intensity modulation by a spin analyzer. This intensity modulation is washed out due to the neutron velocity dispersion, but by proper choice of the spin rotation frequencies as well as the distances between sample, detector and spin flippers, a focal point in space appears (echo point), where the neutron detector is placed. In this work, we describe how to extend the dynamic range of the MIEZE technique by several orders of magnitude by introducing a field subtraction coil (NSE coil), such that at low energy resolution a good overlap with conventional spectroscopy techniques is achieved. All formulas for calculating the tuning parameters and an experimental example from the RESEDA spectrometer at the Heinz Maier–Leibnitz Zentrum (MLZ) are discussed.

Funder

Bundesministerium für Bildung und Forschung

Publisher

IOP Publishing

Subject

Applied Mathematics,Instrumentation,Engineering (miscellaneous)

Reference19 articles.

1. Magnetic resonance for nonrotating fields;Bloch;Phys. Rev.,1940

2. Experimente mit polarisierten neutronen zu fragen der höchstaufgelösten spektrometrie und quantenoptik;Schmidt,1995

3. A neutron resonance spin echo spectrometer for quasi-elastic and inelastic scattering;Golub;Phys. Lett. A,1987

4. Neutron resonance spin flippers: static coils manufactured by electrical discharge machining;Martin;Rev. Sci. Instrum.,2014

5. Effective field integral subtraction by the combination of spin echo and resonance spin echo;Häussler;Phys. Chem. Chem. Phys.,2005

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