Maliszewskyj N C, Osovizky A, Pritchard K, Yehuda-Zada Y, Binkley E, Ziegler J, Tsai P, Hadad N, Baltic G M, Jackson M, Hurlbut C, Majkrzak C F
NIST Center for Neutron Research, Gaithersburg, MD, 20899, USA.
Rotem Industries Ltd, Rotem Industrial Park, 86800, Israel.
Nucl Instrum Methods Phys Res A. 2018 Nov;907. doi: 10.1016/j.nima.2018.05.023.
We describe the design, fabrication, and performance of an energy analyzing detector package for cold neutron spectrometers at the NIST Center for Neutron Research (NCNR). The detector package consists of arrays of highly oriented pyrolytic graphite crystals set at takeoff angles corresponding to different neutron energies. Neutrons incident down the array will be selected out by the appropriate crystal and directed onto an associated neutron detector. The arrays are capable of binning neutrons into one of 54 bins over an energy range of 2.29 meV to 5.11 meV. We describe theory of operation, the development of a highly efficient ultrathin neutron sensor, and the development of the arrays themselves. We present preliminary results for this detector array along with a mature design of the scintillator neutron detector. We also present enhancements we are pursuing prior to deployment of this technology.
我们描述了美国国家标准与技术研究院中子研究中心(NCNR)用于冷中子谱仪的能量分析探测器组件的设计、制造和性能。该探测器组件由高度取向的热解石墨晶体阵列组成,这些晶体以对应于不同中子能量的出射角设置。沿阵列入射的中子将被合适的晶体选出并导向相关的中子探测器。这些阵列能够在2.29毫电子伏特至5.11毫电子伏特的能量范围内将中子分类到54个区间中的一个。我们描述了其工作原理、高效超薄中子传感器的研发以及阵列本身的研发。我们展示了该探测器阵列的初步结果以及闪烁体中子探测器的成熟设计。我们还介绍了在这项技术部署之前我们正在进行的改进。