4.4 Article

RESPECT: Neutron resonance spin-echo spectrometer for extreme studies

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.nima.2016.08.004

关键词

Neutron spin echo; Neutron scattering; European spallation source; Guide system; Polarization

资金

  1. German Ministry for Science and Technology (BMBF) under Mitwirkung der Zentren der Helmholtz Gemeinschaft und der Technischen Universitat Munchen an der Design-Update Phase der ESS, Forderkennzeichen [05E10WO1]
  2. ERC [291079]
  3. program Erforschung kondensierter Materie an Grossgeraten

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We propose the design of a REsonance Spin-echo spECtrometer for exTreme studies, RESPECT, that is ideally suited for the exploration of non-dispersive processes such as diffusion, crystallization, slow dynamics, tunneling processes, crystal electric field excitations, and spin fluctuations. It is a variant of the conventional neutron spin-echo technique (NSE) by (i) replacing the long precession coils by pairs of longitudinal neutron spin-echo coils combined with RF-spin flippers and (ii) by stabilizing the neutron polarization with small longitudinal guide fields that can in addition be used as field subtraction coils thus allowing to adjust the field integrals over a range of 8 orders of magnitude. Therefore, the dynamic range of RESPECT can in principle be varied over 8 orders of magnitude in time, if neutrons with the required energy are made available. Similarly as for existing NSE-spectrometers, spin echo times of up to approximately 1 mu s can be reached if the divergence and the correction elements are properly adjusted. Thanks to the optional use of neutron guides and the fact that the currents for the correction coils are much smaller than in standard NSE, intensity gains of at least one order of magnitude are expected, making the concept of RESPECT also competitive for operation at medium flux neutron sources. RESPECT can also be operated in a MIEZE configuration allowing the investigation of relaxation processes in depolarizing environments as they occur when magnetic fields are applied at the sample position, i.e. for the investigation of the dynamics of flux lines in superconductors, magnetic fluctuations in ferromagnetic materials, and samples containing hydrogen. (C) 2016 Elsevier B.V. All rights reserved.

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