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Position-sensitive scintillation neutron detectors using a crossed-fiber optic readout array

机译:使用交叉光纤读数阵列定位敏感的闪烁中子探测器

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The Spallation Neutron Source (SNS) under construction at the oak Ridge National Laboratory will be the most important new neutron scattering facility in the United States. Neutron scattering instruments for the SNS will require large area detectors with fast response ($LS 1 microsecond), high efficiency over a wide range of neutron energies (0.1 to 10 eV), and low gamma ray sensitivity. We are currently developing area neutron detectors based on a combination of $+6$/LiF/ZnS scintillator screens coupled to a wavelength- shifting fiber optic readout array. A 25 $MUL 25-cm prototype detector is currently under development. Initial tests at the High Flux Isotope Reactor have demonstrated good imaging properties coupled with very low gamma ray sensitivity. In addition, we have developed a multi-layer scintillator/fiber detector to replace existing He-3 gas detector tubes for higher speed operation. This detector has demonstrated a neutron detection efficiency of over 75% at a neutron energy of 0.056 eV or about twice thermal. The response time of this detector is approximately 1 microsecond. Details of the design and test results of both detectors will be presented.
机译:在橡树岭国家实验室建设的介绍中子源(SNS)将是美国最重要的新中子散射设施。中子散射仪器为SNS将需要具有快速响应($ LS 1微秒),在宽范围的中子能量(0.1〜10电子伏特)的高效率,以及低γ射线的灵敏度大的面积检测器。我们根据的$ + 6 $ /的LiF /硫化锌闪烁器屏耦合到与波长移位光纤读出阵列的组合目前正在开发区域的中子探测器。 25美元25厘米的原型探测器目前正在开发中。高通量同位素反应器的初始测试已经证明了良好的成像性能,耦合具有非常低的γ射线敏感性。此外,我们开发了一种多层闪烁体/光纤探测器,用于更换现有的HE-3气体检测管,以进行更高的速度操作。该检测器已经在0.056eV的中子能量下显示出超过75%的中子检测效率或热量。该探测器的响应时间约为1微秒。将提出两个探测器的设计和测试结果的细节。

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