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Properties of the single neutron pixel detector based on the Medipix-1 device

机译:基于Medipix-1装置的单个中子像素探测器的特性

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摘要

Neutron transmission radiography (neutronography) is based on the attenuation of radiation passing through matter. Thanks to different values of neutron and X-ray attenuation coefficients in matter, neutronography can image material properties which cannot be obtained by roentgenography (e.g. materials containing light elements such as Hydrogen in plastic or biological samples). The reliable performance of the neutron detecting device is essential for the acquisition of high-quality neutronograms. A single neutron pixel detector based on a single X-ray photon pixel Medipix-1 detector device is presented. Slow neutrons are converted in a converter layer into heavy charged particles which are subsequently detected by the Medipix-1 device. Detection efficiency, spatial resolution and other detector properties are determined for different converter materials (~6LiF, ~(10)B) and compared with results of Monte-Carlo simulations. Several neutronograms of real objects demonstrating the capabilities and possible applications of the technique are presented.
机译:中子透射射线照相术(neutronography)是基于穿过物质的辐射的衰减。由于物质中的中子衰减系数和X射线衰减系数值不同,中子照相可以成像X射线照相无法获得的材料特性(例如,塑料或生物样品中含有轻元素如氢的材料)。中子检测装置的可靠性能对于获取高质量的中子图至关重要。提出了基于单个X射线光子像素Medipix-1检测器设备的单个中子像素检测器。缓慢的中子在转换层中转换为重的带电粒子,随后被Medipix-1设备检测到。确定了不同转换器材料(〜6LiF,〜(10)B)的检测效率,空间分辨率和其他检测器属性,并将其与蒙特卡洛模拟的结果进行了比较。展示了一些实物的中子图,展示了该技术的功能和可能的应用。

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