The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors

In the present work we found the maximum discovery distance for 239Pu-Be source using the detectors based on ZWO (ZnWO4) and BGO (Bi4Ge3O12) oxide scintillators. Detection distance was defined by using the radiation monitoring system ”PORTAL”. This research gives us data for estimation of the contri...

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Main Authors: Gennadiy M. Onyshchenko, Volodymyr D. Ryzhikov, Ivan I. Yakymenko, Oleksandr P. Shchus’
Format: Article
Language:English
Published: V.N. Karazin Kharkiv National University Publishing 2019-12-01
Series:East European Journal of Physics
Subjects:
Online Access:https://periodicals.karazin.ua/eejp/article/view/14756
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author Gennadiy M. Onyshchenko
Volodymyr D. Ryzhikov
Ivan I. Yakymenko
Oleksandr P. Shchus’
author_facet Gennadiy M. Onyshchenko
Volodymyr D. Ryzhikov
Ivan I. Yakymenko
Oleksandr P. Shchus’
author_sort Gennadiy M. Onyshchenko
collection DOAJ
description In the present work we found the maximum discovery distance for 239Pu-Be source using the detectors based on ZWO (ZnWO4) and BGO (Bi4Ge3O12) oxide scintillators. Detection distance was defined by using the radiation monitoring system ”PORTAL”. This research gives us data for estimation of the contribution of low-energy cascade gamma quanta CGQ. The CGQ emitted by excited scintillator nuclei defined the effective discovery distance of the fast neutrons source. The maximum detection distance was obtained with PMT in a single-photon counting mode. The maximum discovery distance for a BGO scintillator of size Ø40×40 mm – 38 cm, ZWO scintillator of size Ø52×40 mm – 54 cm, with reliability about 0.001. The results of the experiment on the ZWO scintillator can be explained by the registration of additional gamma quanta from the inelastic scattering reaction and the CGQ arising from resonant neutron capture region. This two mechanisms further lead to increase the sensitivity of the detector and increase the detection distance of the monitoring system. The key features of the monitoring system are: ZWO oxide scintillator, wide band measuring path, utilize PMT in single photon mode. The obtained detection distance was about 1.4 times higher in comparison with the spectrometric recording mode and 1.9 times higher in values of efficiency. Our results demonstrate the advantages of the ZWO scintillator compared to the BGO and demonstrate the possibility of using the resonant capture mechanism by ZWO detector nuclei to increase the fast neutrons sensitivity. The resonance capture mechanism increase sensitivity and maximum detection distance of the monitoring system. The low-energy gamma-quanta, which discharge of compound nuclei, are substantially suppressed in comparison with the classic spectrometric recording mode.
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spelling doaj.art-255438b06df147e6a1eeafabd91a69372022-12-21T18:55:56ZengV.N. Karazin Kharkiv National University PublishingEast European Journal of Physics2312-43342312-45392019-12-014919410.26565/2312-4334-2019-4-1014756The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation DetectorsGennadiy M. Onyshchenko0Volodymyr D. Ryzhikov1Ivan I. Yakymenko2Oleksandr P. Shchus’3V.N. Karazin Kharkiv National University, Kharkiv, Ukraine; Institute for Scintillation Materials, STC ”Institute for Single Crystals” National Academy of Sciences of Ukraine, Kharkiv, UkraineInstitute for Scintillation Materials, STC ”Institute for Single Crystals” National Academy of Sciences of Ukraine, Kharkiv, UkraineV.N. Karazin Kharkiv National University, Kharkiv, UkraineV.N. Karazin Kharkiv National University, Kharkiv, UkraineIn the present work we found the maximum discovery distance for 239Pu-Be source using the detectors based on ZWO (ZnWO4) and BGO (Bi4Ge3O12) oxide scintillators. Detection distance was defined by using the radiation monitoring system ”PORTAL”. This research gives us data for estimation of the contribution of low-energy cascade gamma quanta CGQ. The CGQ emitted by excited scintillator nuclei defined the effective discovery distance of the fast neutrons source. The maximum detection distance was obtained with PMT in a single-photon counting mode. The maximum discovery distance for a BGO scintillator of size Ø40×40 mm – 38 cm, ZWO scintillator of size Ø52×40 mm – 54 cm, with reliability about 0.001. The results of the experiment on the ZWO scintillator can be explained by the registration of additional gamma quanta from the inelastic scattering reaction and the CGQ arising from resonant neutron capture region. This two mechanisms further lead to increase the sensitivity of the detector and increase the detection distance of the monitoring system. The key features of the monitoring system are: ZWO oxide scintillator, wide band measuring path, utilize PMT in single photon mode. The obtained detection distance was about 1.4 times higher in comparison with the spectrometric recording mode and 1.9 times higher in values of efficiency. Our results demonstrate the advantages of the ZWO scintillator compared to the BGO and demonstrate the possibility of using the resonant capture mechanism by ZWO detector nuclei to increase the fast neutrons sensitivity. The resonance capture mechanism increase sensitivity and maximum detection distance of the monitoring system. The low-energy gamma-quanta, which discharge of compound nuclei, are substantially suppressed in comparison with the classic spectrometric recording mode.https://periodicals.karazin.ua/eejp/article/view/14756detectorfast neutronsexcited statescountable efficiencydensity of nuclear levels
spellingShingle Gennadiy M. Onyshchenko
Volodymyr D. Ryzhikov
Ivan I. Yakymenko
Oleksandr P. Shchus’
The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors
East European Journal of Physics
detector
fast neutrons
excited states
countable efficiency
density of nuclear levels
title The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors
title_full The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors
title_fullStr The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors
title_full_unstemmed The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors
title_short The Threshold of Detection of Fission Materials by ZnWO4 and Bi4Ge3O12 Scintillation Detectors
title_sort threshold of detection of fission materials by znwo4 and bi4ge3o12 scintillation detectors
topic detector
fast neutrons
excited states
countable efficiency
density of nuclear levels
url https://periodicals.karazin.ua/eejp/article/view/14756
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