Development of Energy-Resolved Neutron Imaging Detectors at RADEN

J. Parker, M. Harada, H. Hayashida, K. Hiroi, T. Kai, Y. Matsumoto, T. Nakatani, K. Oikawa, M. Segawa, T. Shinohara, Yuhua Su, A. Takada, T. Takemura, T. Taniguchi, T. Tanimori, Y. Kiyanagi
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引用次数: 12

Abstract

Energy-resolved neutron imaging at a pulsed source utilizes the energy-dependent neutron transmission measured via time-of-flight to extract quantitative information about the internal microstructure of an object. At the RADEN instrument at J-PARC in Japan, we use cutting-edge detectors employing micro-pattern detectors or fast Li-glass scintillators and fast, all-digital data acquisition to perform such measurements, while continuing their development toward better utilization of the intense neutron source. In particular, for the Micro-Pixel Chamber based Neutron Imaging Detector ({\mu}NID), a micro-pattern detector with a 400 {\mu}m pitch and employing 3He for neutron conversion, we have successfully improved the spatial resolution from 200 to 100 {\mu}m, increased the detection efficiency from 18 to 26% for thermal neutrons, and increased the maximum count rate from 0.4 to 1 Mcps. We are also testing a new readout element with a 215 {\mu}m pitch for further improved spatial resolution, and a {\mu}NID with boron-based neutron converter for increased rate performance.
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RADEN能量分辨中子成像探测器的研制
脉冲源的能量分辨中子成像利用通过飞行时间测量的能量依赖中子透射来提取有关物体内部微观结构的定量信息。在日本J-PARC的RADEN仪器中,我们使用尖端的探测器,采用微模式探测器或快速Li-glass闪烁体和快速全数字数据采集来进行此类测量,同时继续发展以更好地利用强中子源。特别是基于微像元腔室的中子成像探测器(NID),其间距为400 {\mu}m,利用3He进行中子转换,我们成功地将空间分辨率从200提高到100 {\mu}m,将热中子的探测效率从18%提高到26%,并将最大计数率从0.4提高到1 Mcps。我们还在测试一种具有215 {\mu}m间距的新读出元件,以进一步提高空间分辨率,以及带有硼基中子转换器的{\mu}NID,以提高速率性能。
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