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Multi-Grid detector for neutron spectroscopy: results obtained on time-of-flight spectrometer CNCS

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journal contribution
posted on 2025-05-09, 15:15 authored by M. Anastasopoulos, R. Bebb, S. M. Everett, B. Guerard, R. Hall-Wilton, K. Herwig, L. Hultman, C. Höglund, I. Iruretagoiena, F. Issa, J. Jensen, A. Khaplanov, K. Berry, O. Kirstein, I. Lopez Higuera, F. Piscitelli, L. Robinson, S. Schmidt, I. Stefanescu, J. Birch, T. Bryś, J.-C. Buffet, J.-F. Clergeau, P. P. Deen, G. Ehlers, P. van Esch
The Multi-Grid detector technology has evolved from the proof-of-principle and characterisation stages. Here we report on the performance of the Multi-Grid detector, the MG.CNCS prototype, which has been installed and tested at the Cold Neutron Chopper Spectrometer, CNCS at SNS. This has allowed a side-by-side comparison to the performance of ³He detectors on an operational instrument. The demonstrator has an active area of 0.2 m². It is specifically tailored to the specifications of CNCS. The detector was installed in June 2016 and has operated since then, collecting neutron scattering data in parallel to the He-3 detectors of CNCS. In this paper, we present a comprehensive analysis of this data, in particular on instrument energy resolution, rate capability, background and relative efficiency. Stability, gamma-ray and fast neutron sensitivity have also been investigated. The effect of scattering in the detector components has been measured and provides input to comparison for Monte Carlo simulations. All data is presented in comparison to that measured by the ³He detectors simultaneously, showing that all features recorded by one detector are also recorded by the other. The energy resolution matches closely. We find that the Multi-Grid is able to match the data collected by ³He, and see an indication of a considerable advantage in the count rate capability. Based on these results, we are confident that the Multi-Grid detector will be capable of producing high quality scientific data on chopper spectrometers utilising the unprecedented neutron flux of the ESS.

History

Journal title

Journal of Instrumentation

Volume

12

Publisher

Institute of Physics Publishing

Language

  • en, English

College/Research Centre

Faculty of Engineering and Built Environment

School

School of Engineering

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CC-BY Published under the terms of the Creative Commons Attribution 3.0 License by IOP Publishing Ltd and Sissa Medialab srl. Any further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation and DOI.

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