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Method for improving the angular resolution of a neutron scatter camera

机译:一种提高中子散射相机角分辨率的方法

摘要

An instrument that will directly image the fast fission neutrons from a special nuclear material source wherein the neutron detection efficiency is increased has been described. Instead of the previous technique that uses a time-of-flight (TOF) between 2 widely spaced fixed planes of neutron detectors to measure scatter neutron kinetic energy, we now use the recoil proton energy deposited in the second of the 2 scatter planes which can now be repositioned either much closer together or further apart. However, by doubling the separation distance between the 2 planes from 20 cm to a distance of 40 cm we improved the angular resolution of the detector from about 12° to about 10°. A further doubling of the separation distance to 80 cm provided an addition improvement in angular resolution of the detector to about 6° without adding additional detectors or ancillary electronics. The distance between planes also may be dynamically changed using a suitable common technique such as a gear- or motor-drive to toggle between the various positions. The angular resolution of this new configuration, therefore, is increased at the expanse of detection sensitivity. However, the diminished sensitivity may be acceptable for those applications where the detector is able to interrogate a particular site for an extended period.
机译:已经描述了一种将对来自特殊核材料源的快速裂变中子直接成像的仪器,其中提高了中子的探测效率。代替以前的技术,该技术使用两个中子探测器的固定间隔较大的固定平面之间的飞行时间(TOF)来测量散射中子动能,我们现在使用沉积在两个散射平面中第二个中的反冲质子能现在可以重新放置在更近或更远的位置。但是,通过将两个平面之间的间隔距离从20 cm加倍到40 cm,我们将检测器的角分辨率从大约12°提高到了大约10°。分离距离进一步加倍至80厘米,可将检测器的角分辨率提高到大约6°,而无需添加其他检测器或辅助电子设备。平面之间的距离也可以使用适当的通用技术(例如齿轮驱动器或电动机驱动器)在各种位置之间切换来动态改变。因此,这种新配置的角分辨率随着检测灵敏度的提高而增加。但是,对于探测器能够长时间询问特定位置的那些应用,灵敏度降低可能是可以接受的。

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