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Innovative Gamma-Radiation Detector for Radiation Monitors

机译:用于辐射监视器的创新伽马辐射探测器

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One of the most efficient technologies that prevent the unauthorized displacement of nuclear materials and radioactive substances are radiation monitors. Currently the monitors detecting gamma-radiation and direct neutron radiation are most widely used. This paper describes a heterogeneous scintillation detector of gamma radiation (HSD). The HSD consists of alternating layers of converting material where gamma quanta flow transforms into a flow of electrons and positrons, and adjacent detecting layers of scintillation material where the energy of charged particles is transformed into light scintillations. The change in spectral sensitivity of the HSD is achieved through selection of the thickness and number of layers along with application of a special signal registration system that can select gamma quanta per the rate of their registration in several detection layers. The proposed spatial-and-functional structure significantly expands the detector capabilities as compared with traditional scintillation detectors by making it possible to build a spatially-oriented detector. The sensitive spectrally detectors of gamma-radiation with a large aperture have a high efficiency of gamma-radiation registration, higher operating speed and low sensitivity to neutrons.
机译:防止未经授权的核材料和放射性物质的最有效的技术之一是辐射监测。目前,检测伽马辐射和直接中子辐射的监视器最广泛地使用。本文描述了γ辐射(HSD)的异质闪烁检测器。 HSD由转换材料的交替层组成,其中伽马量子流变换成电子和正弦流,以及相邻的带电粒子的能量转化为轻闪烁的闪烁材料的检测层。通过选择厚度和数量以及应用特殊信号登记系统的厚度和数量来实现HSD的频谱灵敏度的变化,该特殊信号登记系统可以在几个检测层中选择每个配准速率的伽马量子。与传统的闪烁探测器相比,所提出的空间和功能结构明显扩展了探测器能力,使其通过构建面向空间的探测器。具有大孔径的γ-辐射的敏感谱检测器具有高效率的伽马辐射配准,操作速度更高,对中子的敏感性低。

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