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Feasibility of LaBr3(Ce) detector to measure nuclear resonance fluorescence from special nuclear materials

机译:LaBr3(Ce)检测器测量特殊核材料产生的核共振荧光的可行性

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A nuclear resonance fluorescence (NRF) experiment was performed on a 235U target with the quasi-monochromatic γ-ray at High Intensity γ-ray Source (HIγS) using the 1733 keV resonant energy. A LaBr3(Ce) detector array consisting of 8 cylindrical detectors, each has length of 7.62 cm and a diameter of 3.81 cm, in diameter was implemented in this measurement. Moreover, high purity germanium (HPGe) detector array consisting of 4 detectors each has a relative efficiency of 60 %, was used as a benchmark for the measurement taken by LaBr3(Ce) detector array. The integrated cross-section of the NRF level measured with LaBr3(Ce) detector showed good agreement with the available data. Consequently, LaBr3(Ce) detector could be feasible to use as a detector for the special nuclear material inspection system.
机译:使用1733 keV共振能,在高强度γ射线源(HIγS)上用准单色γ射线对 235 U目标进行了核共振荧光(NRF)实验。在该测量中,实现了由8个圆柱形探测器组成的LaBr 3 (Ce)探测器阵列,每个探测器的长度为7.62厘米,直径为3.81厘米。此外,由4个探测器组成的高纯度锗(HPGe)探测器阵列的相对效率为60%,被用作LaBr 3 (Ce)探测器阵列进行测量的基准。用LaBr 3 (Ce)检测器测得的NRF水平的综合截面与现有数据显示出良好的一致性。因此,将LaBr 3 (Ce)探测器用作特殊核材料检查系统的探测器是可行的。

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