2018
DOI: 10.1016/j.nima.2018.06.056
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An event-triggered coincidence algorithm for fast-neutron multiplicity assay corrected for cross-talk and photon breakthrough

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Cited by 8 publications
(1 citation statement)
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“…However, plastic scintillators are strongly sensitive to gamma rays, which, in addition, may scatter between detectors and thus produce parasitic coincidences that will be merged with useful (i.e., different-particle) coincidence events expected from fission. For instance, (α,n) reactions accompanied by correlated gamma rays, or pure gamma ray sources emitting correlated gamma radiations can induce undesired high-order coincidences [6] due to the mentioned multi-detector hit events by a single gamma-ray or neutron, that are currently under worldwide investigations [4], [7][8][9][10]. Although some plastic scintillators allow via the Pulse Shape Discrimination (PSD) to sort neutron and gamma ray events [11][12][13][14], they are not a practical alternative for radioactive waste drum characterization.…”
Section: Introductionmentioning
confidence: 99%
“…However, plastic scintillators are strongly sensitive to gamma rays, which, in addition, may scatter between detectors and thus produce parasitic coincidences that will be merged with useful (i.e., different-particle) coincidence events expected from fission. For instance, (α,n) reactions accompanied by correlated gamma rays, or pure gamma ray sources emitting correlated gamma radiations can induce undesired high-order coincidences [6] due to the mentioned multi-detector hit events by a single gamma-ray or neutron, that are currently under worldwide investigations [4], [7][8][9][10]. Although some plastic scintillators allow via the Pulse Shape Discrimination (PSD) to sort neutron and gamma ray events [11][12][13][14], they are not a practical alternative for radioactive waste drum characterization.…”
Section: Introductionmentioning
confidence: 99%