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Development of Optical-fiber-based Neutron Detector Using Li glass Scintillator for an Intense Neutron Field

机译:锂玻璃闪烁体在强中子场中基于光纤的中子探测器的研制

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The development of a neutron detector for real-time measurements in an intense neutron field is desired. We are developing a quartz optical-fiber-based neutron detector as a real-time neutron monitor. Thus far, Eu:LiCaAlF_6 crystals and LiF/Eu:CaF_2 eutectics have been used as the scintillators of the quartz optical-fiber-based neutron detectors. These scintillators have high light yields, but relatively long decay time constants, which are the limiting factors for the dynamic range of optical-fiber-based neutron detectors. In this work, we applied a small Li glass scintillator to a quartz optical-fiber-based neutron detector using an optical fiber with high numerical aperture and a UV-curable resin with high transmittance. The fabricated detector showed a clear peak corresponding to neutron events in the pulse height distribution. The radiation resistance was evaluated and no deterioration was observed up to 2 × 10~(12) n/cm~2. The detector output linearity was confirmed up to 450 kcps, which was about ten times larger than that of the detector using the conventional Eu:LiCaAlF6 or LiF/Eu:CaF2 scintillator.
机译:需要开发用于在强中子场中进行实时测量的中子探测器。我们正在开发一种基于石英光纤的中子探测器作为实时中子监测器。迄今为止,Eu:LiCaAlF_6晶体和LiF / Eu:CaF_2共晶已被用作基于石英光纤的中子探测器的闪烁体。这些闪烁体具有高的光产生率,但是具有相对较长的衰减时间常数,这是基于光纤的中子探测器动态范围的限制因素。在这项工作中,我们将一个小型的锂玻璃闪烁体应用于石英光纤中子探测器,该探测器使用具有高数值孔径的光纤和具有高透射率的紫外线固化树脂。制成的探测器在脉冲高度分布中显示出与中子事件相对应的清晰峰。评估了抗辐射性,直到2×10〜(12)n / cm〜2都没有观察到劣化。确认检测器的输出线性度高达450 kcps,这是使用常规Eu:LiCaAlF6或LiF / Eu:CaF2闪烁器的检测器线性度的大约十倍。

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