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Article type: Research Article
Authors: Kruglov, V.V.a | Balagurov, A.M.a | Belova, M.O.a | Bobrikov, I.A.a | Bogdzel, A.A.a | Bodnarchuk, V.I.a | Bulavina, V.V.a | Daulbaev, O.a; c; d | Drozdov, V.A.a | Zhuravlev, V.V.a | Kirilov, A.S.a | Kulikov, S.A.a | Kurilkin, A.K.a | Milkov, V.M.a | Murashkevich, S.M.a | Podlesnyy, M.M.a; b; * | Prikhodko, V.I.a | Churakov, A.V.a | Shvetsov, V.V.a
Affiliations: [a] Joint Institute for Nuclear Research (JINR), Dubna, Moscow region, 141980, Russian Federation | [b] Moscow Institute of Physics and Technology (National Research University), Dolgoprudny, Moscow region, 141701, Russian Federation | [c] The Institute of Nuclear Physics, Ministry of Energy of the Republic of Kazakhstan, 050032 Almaty, Kazakhstan | [d] Al-Farabi Kazakh National University, 050038 Almaty, Kazakhstan
Correspondence: [*] Corresponding author. E-mail: maxim.podlesnyy@nf.jinr.ru.
Abstract: The high-resolution Fourier diffractometer (HRFD) operates at the IBR-2 pulsed reactor, on which the correlation method of data registering has been implemented using a fast Fourier chopper and specialized electronics. A wide-aperture ring back-scattering detector for HRFD has been developed. The detector consists of six ZnS(Ag)/6LiF-scintillation rings, each one of which is divided into 12 sections. Main parameters of this detector: covered solid angle 2θ=(133−175)∘; Ωd≈2.0 sr; average absorption efficiency 85%, geometric contribution to resolution Δd/d<0.0005. The concept of a detector and its data acquisition system are presented.
Keywords: Neutron diffraction, neutron detectors, detector electronics
DOI: 10.3233/JNR-210001
Journal: Journal of Neutron Research, vol. 23, no. 4, pp. 243-250, 2021
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