An imaging neutron spectrometer

J. Ryan, C. Bancroft, P. Bloser, U. Bravar, C. Frost, M. McConnell, J. Legere, Joshua R. Wood, R. Woolf, D. Fourguette, L. Larocque, Jane C. Pavlich, G. Ritter, Gregory J. Wassick
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引用次数: 1

Abstract

We have developed, fabricated and tested a prototype imaging neutron spectrometer designed for real-time neutron source location and identification. Real-time detection and identification is important for locating materials. These materials, specifically uranium and transuranics, emit neutrons via spontaneous or induced fission. Unlike other forms of radiation (e.g. gamma rays), penetrating neutron emission is very uncommon. The instrument detects these neutrons, constructs images of the emission pattern, and reports the neutron spectrum. The device will be useful for security and proliferation deterrence, as well as for nuclear waste characterization and monitoring. The instrument is optimized for imaging and spectroscopy in the 1–20 MeV range. The detection principle is based upon multiple elastic neutron-proton scatters in organic scintillator. Two detector panel layers are utilized. By measuring the recoil proton and scattered neutron locations and energies, the direction and energy spectrum of the incident neutrons can be determined and discrete and extended sources identified. Event reconstruction yields an image of the source and its location. The hardware is low power, low mass, and rugged. Its modular design allows the user to combine multiple units for increased sensitivity. We will report the results of laboratory testing of the instrument, including exposure to a calibrated Cf-252 source. Instrument parameters include energy and angular resolution, gamma rejection, minimum source identification distances and times, and projected effective area for a fully populated instrument.
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成像中子谱仪
我们开发、制造并测试了一台用于实时中子源定位和识别的成像中介仪样机。实时检测和识别对于物料定位非常重要。这些物质,特别是铀和超铀物质,通过自发或诱导裂变释放中子。与其他形式的辐射(例如伽马射线)不同,穿透中子发射是非常罕见的。仪器检测这些中子,构建发射模式的图像,并报告中子谱。该装置将用于安全和扩散威慑,以及核废料的表征和监测。该仪器在1-20 MeV范围内进行了成像和光谱优化。探测原理是基于有机闪烁体中的多个弹性中子-质子散射。采用了两层探测器面板。通过测量反冲质子和散射中子的位置和能量,可以确定入射中子的方向和能谱,并确定离散源和扩展源。事件重建产生源及其位置的图像。硬件低功耗,低质量,坚固耐用。其模块化设计允许用户组合多个单元以提高灵敏度。我们将报告仪器的实验室测试结果,包括暴露于校准的Cf-252源。仪器参数包括能量和角分辨率,伽马抑制,最小源识别距离和时间,以及全填充仪器的投影有效面积。
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