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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Methods for diagnosing and quantifying double pulsing in a Uranium Neutron Collar system using shift register logic
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Methods for diagnosing and quantifying double pulsing in a Uranium Neutron Collar system using shift register logic

机译:使用移位寄存器逻辑诊断和量化铀中子项圈系统中双脉冲的方法

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Double pulsing in neutron coincidence counters is the result of a pulse processing chain-He-3 proportional counter timing incompatibility known to nondestructive assay system designers. It is not currently widely acknowledged, or accounted for, in the user community. However, it is gaining attention as list mode data acquisition and analysis becomes more commonly used for system diagnostics, revealing features that have been overlooked by historic timing gate selection using traditional shift register data acquisition methods. Double pulsing increases the apparent number of measured neutron events from a source. Therefore, it may contribute to a falsely increased count rate if present at the operational high voltage used when assaying samples, even with set predelays. The authors have previously studied the effects of double pulsing, using list mode data acquisition and analysis on neutron pulse trains in three common neutron coincidence counting systems used in routine measurements for international safeguards: a Canberra Industries JCC-71 Neutron Coincidence Collar, a variant on the Canberra Industries JCC-51 Active Well Neutron Coincidence Counter (the Large Volume Active Well Neutron Coincidence Counter), and an AnTech Inc. N2071 Neutron Coincidence Collar. This non-ideal behavior was isolated to the Amptek A111 Charge Sensitive Preamplifier & Discriminator chip used in both the Canberra Industries and Antech systems. The double pulsing fraction was calculated in post-analysis for various high voltage settings in these A111-based systems, assuming no predelay settings. In this work, the authors expand upon this identification and analysis to make it more translatable between list mode data acquisition and analysis and shift register-based analysis. By investigating the double pulsing fractions in a JCC-71 Uranium Neutron Collar as a function of predelay settings, as well as describing and performing alternative tests and analyses to diagnose and quantify the double pulsing using shift register logic, this work hopes to complete the picture of double pulsing identification and analysis.
机译:中子符合计数器中的双脉冲是无损检测系统设计人员已知的脉冲处理链He-3比例计数器定时不兼容的结果。当前在用户社区中尚未得到广泛认可或解释。但是,由于列表模式数据采集和分析变得越来越普遍地用于系统诊断,因此越来越受到关注,它揭示了使用传统移位寄存器数据采集方法的历史定时选通所忽略的功能。双脉冲增加了从源头测得的中子事件的视在数量。因此,即使存在预先设置的延迟,如果在分析样品时使用的工作高电压下存在,也会导致计数率错误增加。作者以前曾使用列表模式数据采集和分析,在国际保障措施常规测量中使用的三种常见中子符合计数系统中,对中子脉冲序列进行双脉冲效应研究:Canberra Industries JCC-71中子符合项圈,一种变体。堪培拉工业公司的JCC-51主动阱中子符合计数器(大容量主动阱中子符合计数器)和AnTech Inc. N2071中子符合项。这种非理想的行为被隔离到堪培拉工业公司和Antech系统中使用的Amptek A111电荷敏感型前置放大器和鉴别器芯片。假设没有预延迟设置,那么在这些基于A111的系统中,针对各种高压设置在分析后计算双脉冲分数。在这项工作中,作者扩展了这种识别和分析,以使其在列表模式数据获取和分析以及基于移位寄存器的分析之间更易于翻译。通过研究JCC-71铀中子项圈中的双脉冲分数作为预延迟设置的函数,以及描述和执行替代测试和分析以使用移位寄存器逻辑来诊断和量化双脉冲,这项工作希望能够完成图片脉冲识别与分析

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