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학술저널
저자정보
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한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제50권 제7호
발행연도
2018.1
수록면
1,006 - 1,016 (11page)

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Since the early forties, researchers from around the world have been studying the phenomenon ofdeadtime in radiation detectors. Many have attempted to develop models to represent this phenomenon. Two highly idealized models; paralyzable and non-paralyzable are commonly used by most individualsinvolved in radiation measurements. Most put little thought about the operating conditions and applicabilityof these ideal models for their experimental conditions. So far, there is no general agreement onthe applicability of any given model for a specific detector under specific operating conditions, let alone auniversal model for all detectors and all operating conditions. Further the related problem of pile-up isoften confused with the deadtime phenomenon. Much work, is needed to devise a generalized andpractical solution to these related problems. Many methods have been developed to measure andcompensate for the detector deadtime count loss, and many researchers have addressed deadtime andpulse pile-up. The goal of this article is to summarize the state of science of deadtime; measurement andcompensation techniques as proposed by some of the most significant work on these topics and to reviewthe deadtime correction models applicable to present day radiation detection systems.

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