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A novel detection system using neutron/gamma pulse shape discrimination, for use in active interrogation environments

机译:使用中子/伽马脉冲形状判别的新型检测系统,用于主动审讯环境

摘要

Continuous improvements are being sought to identify special nuclear material more accurately. Active interrogation is a current field of research for this application, capable of penetrating shielding materials but which can feature a complex and challenging radiation field for detectors to operate in. This research was aimed at improving active interrogation techniques further by optimising experimental setups and procedures and reducing undesirable dead periods of acquisition which may be observed. The important outcomes from this research are listed below: • The creation of a new empirical fit to better represent the rising edge of pulses from both neutrons and gamma rays than the currently used Marrone fit (suited to the decay tail of pulses). • The ability to clearly distinguish a selection of gamma rays using this rise time technique post-processing previously acquired data consisting of a mixed radiation field. • The effect of angular orientation of liquid scintillators on FoM values after performing PSD techniques has been identified as well as sensitivity issues associated with the position of the nitrogen void within these detectors. • A novel gated organic plastic scintillator detector has been operated and controlled using a trigger circuit devised in this research. This circuit controlled whether the gated detector was active through the presence of light. • A radiation based detector was integrated with this trigger circuit controlling the gated detector by making the device inactive whenever a radiation count was observed.
机译:寻求不断的改进以更准确地识别特殊核材料。主动询问是此应用程序的当前研究领域,能够穿透屏蔽材料,但可以为检测器提供复杂且具有挑战性的辐射场。该研究旨在通过优化实验装置和程序以及进一步改进主动询问技术。减少可能观察到的不良的采集死区。这项研究的重要成果如下:•建立了新的经验拟合,以比当前使用的Marrone拟合(适合于脉冲的衰变尾部)更好地表示来自中子和伽马射线的脉冲上升沿。 •使用这种上升时间技术可以清晰地区分伽玛射线,对包含混合辐射场的先前采集的数据进行后处理。 •已经确定了执行PSD技术后液体闪烁体的角度取向对FoM值的影响,以及与这些检测器内氮空洞的位置有关的灵敏度问题。 •使用本研究中设计的触发电路对新型门控有机塑料闪烁体探测器进行了操作和控制。该电路通过光的存在来控制门控检测器是否处于活动状态。 •基于辐射的探测器与该触发电路集成在一起,通过在每次观察到辐射计数时使设备不活动,从而控制门控探测器。

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    Jones Ashley Richard;

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  • 年度 2016
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