Novel neutron detector for high rate imaging applications

J. Lacy, A. Athanasiades, N. N. Shehad, R. Austin, C.S. Martin
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引用次数: 18

Abstract

Next generation neutron science facilities, such as the Spallation Neutron Source, require improved thermal neutron detectors, with high counting rate capability, high spatial resolution, low cost per unit area, and adaptability to unique geometries. We propose a neutron detector technology, based on arrays of boron-lined plastic straws, that satisfies the above requirements. The elemental component of this detector is a B/sub 4/C-lined mylar straw, 4 mm in diameter and 1 m long, and operated as a proportional counter with an Ar/ethane gas mixture. Thermal neutrons captured in /sup 10/B are converted into secondary particles, which ionize the gas contained within the straw. Using a deep stack of such straws, with 20-25 layers, neutron detection efficiencies up to 80% can be achieved in the 1-10 /spl Aring/ neutron wavelength range. In such a highly segmented array, exceedingly high count rates can be achieved, on the order of 200/spl times/10/sup 6/ cps/m/sup 2/. Gamma ray discrimination was on the order of 10/sup 6/ for an energy threshold of 50 keV; position resolution of a 1-m long detector was measured to be 5.5 mm FWHM, and a highly linear readout was achieved using resistive charge division.
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用于高速率成像应用的新型中子探测器
下一代中子科学设施,如散裂中子源,需要改进的热中子探测器,具有高计数率能力,高空间分辨率,单位面积成本低,以及对独特几何形状的适应性。我们提出了一种基于硼衬里塑料吸管阵列的中子探测器技术,以满足上述要求。该检测器的基本成分是一个B/sub - 4/ c衬里的聚酯吸管,直径4毫米,长1米,作为比例计数器与Ar/乙烷气体混合物。在/sup 10/B中捕获的热中子被转化为二次粒子,使稻草中含有的气体电离。使用20-25层的深堆,在1-10 /spl的波长范围内,可以实现高达80%的中子探测效率。在这样一个高度分段的阵列中,可以实现非常高的计数率,大约为200/spl times/10/sup 6/ cps/m/sup 2/。当能量阈值为50 keV时,伽马射线的分辨能力为10/sup 6/;测量了1 m长的探测器的位置分辨率为5.5 mm FWHM,并使用电阻电荷划分实现了高度线性的读数。
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