首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Characterization of the response and the intrinsic efficiency of a ~4He scintillation detector to fast mono-energetic neutrons
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Characterization of the response and the intrinsic efficiency of a ~4He scintillation detector to fast mono-energetic neutrons

机译:响应的表征和〜4HE闪烁探测器的内在效率,以快速单能量中子

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摘要

The general features of a ~4He gas scintillator prototype detector were characterized, as an alternative to liquid and plastic scintillators for a potential integration into the Radial Neutron Camera (RNC) in ITER. Two measurement campaigns were conducted at the Physikalisch-Technische Bundesanstalt (PTB) Ion Accelerator Facility (PIAF) in Germany using fast mono-energetic neutrons. Results from the first measurement campaign showed a light output response of the detector linear with the incident neutron energy, at least up to 14.8 MeV. A complete discrimination between neutrons and gammas was achieved by applying a 0.30 MeV threshold in terms of deposited neutron energy. The response function and the intrinsic efficiency of the detector were characterized in a second measurement campaign using collimated-beam conditions, similar to those expected in the RNC at ITER, to test the suitability of the detector in such a diagnostic system. The response function to 2.5 MeV and 14.8 MeV mono-energetic neutrons was measured and validated by Monte Carlo simulations. Some changes to the present prototype may be considered in the future to make it suitable as a neutron detector for the RNC at ITER.
机译:〜4HE气体闪烁体原型检测器的一般特征表征为液体和塑料闪烁体的替代方案,用于潜在地集成到ITER中的径向中子摄像机(RNC)中。使用快速单能级中子在德国的Physikalisch-Technische Bundesanstalt(PTB)离子加速器设施(PIAF)进行了两项测量活动。第一测量运动的结果显示检测器线性的光输出响应,入射中子能量至少高达14.8 meV。通过在沉积的中子能量方面应用0.30mev阈值来实现中子和γ之间的完全辨别。检测器的响应功能和探测器的固有效率在使用准直光束条件的第二测量运动中表征,类似于RNC在迭代中的预期,以测试检测器在这种诊断系统中的适用性。通过蒙特卡罗模拟测量并验证了响应函数至2.5MeV和14.8MeV单能级中子。未来可能考虑对本地原型的一些变化,使其适合作为RNC处的中子探测器。

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