Real-Time, Fast Neutron Coincidence Assay of Plutonium With a 4-Channel Multiplexed Analyzer and Organic Scintillators

The design, principle of operation and the results of measurements made with a four-channel organic scintillator system are described. The system comprises four detectors and a multiplexed analyzer for the real-time parallel processing of fast neutron events. The function of the real-time, digital m...

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Veröffentlicht in:IEEE transactions on nuclear science 2014-06, Vol.61 (3), p.1340-1348
Hauptverfasser: Joyce, Malcolm J., Gamage, Kelum A. A., Aspinall, M. D., Cave, F. D., Lavietes, A.
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Sprache:eng
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Zusammenfassung:The design, principle of operation and the results of measurements made with a four-channel organic scintillator system are described. The system comprises four detectors and a multiplexed analyzer for the real-time parallel processing of fast neutron events. The function of the real-time, digital multiple-channel pulse-shape discrimination analyzer is described together with the results of laboratory-based measurements with 252 Cf, 241 Am-Li and plutonium. The analyzer is based on a single-board solution with integrated high-voltage supplies and graphical user interface. It has been developed to meet the requirements of nuclear materials assay of relevance to safeguards and security. Data are presented for the real-time coincidence assay of plutonium in terms of doubles count rate versus mass. This includes an assessment of the limiting mass uncertainty for coincidence assay based on a 100 s measurement period and samples in the range 0-50 g. Measurements of count rate versus order of multiplicity for 252 Cf and 241 Am-Li and combinations of both are also presented.
ISSN:0018-9499
1558-1578
DOI:10.1109/TNS.2014.2313574