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首页> 外文期刊>Journal of nuclear science and technology >Response Functions of Phoswich-Type Neutron Detector for High-Energy Cosmic Ray Neutron Measurement
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Response Functions of Phoswich-Type Neutron Detector for High-Energy Cosmic Ray Neutron Measurement

机译:荧光型中子探测器对高能宇宙射线中子测量的响应功能

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A phoswich-type neutron detector was developed in order to measure high-energy cosmic ray neutron spectra in aircraft. The neutron detector consists of an EJ309 organic liquid scintillator that is 121.7 mm in diameter and 121.7mm in length and is covered with a 15 mm thick EJ299-13 outer plastic scintillator. The neutron response functions of the detector are required for the unfolding method to obtain the energy spectrum. The neutron response functions were created based on MCNPX simulations using an anti-coincidence mode with the experimental light-output correlations with particle energies, uniformity of light collection and energy resolutions. The light-output correlation with particle energy, the uniformity of light collection and the energy resolutions were evaluated based on experiments. Measurements of neutron response functions were performed using four quasi-monoenergetic neutron beams from 40 to 80 MeV p-Li reactions to verify the calculated results. The calculated response functions show good agreement with the measurements. The angular response of the phoswich detector was confirmed to be isotropic from the calculation. The photon response functions of the detector were also calculated and agreed well with the measurements for 6.129 MeV photons. Neutron and photon response matrices were created up to 300 and 50 MeV, respectively, over a wide energy range for experimental flights.
机译:为了测量飞机中的高能宇宙射线中子光谱,开发了一种荧光型中子探测器。中子探测器由直径为121.7毫米,长度为121.7毫米的EJ309有机液体闪烁器组成,并覆盖有15毫米厚的EJ299-13外部塑料闪烁器。展开方法获得能量谱需要探测器的中子响应功能。中子响应函数是基于MCNPX模拟使用反符合模式创建的,具有与粒子能量,光收集均匀性和能量分辨率的实验光输出相关性。通过实验评估了光输出与粒子能量的相关性,集光的均匀性和能量分辨率。使用从40 MeV p-Li反应到80 MeV p-Li反应的四个准单能中子束进行中子响应函数的测量,以验证计算结果。计算出的响应函数与测量值显示出良好的一致性。从计算中证实了磷光检测器的角响应是各向同性的。还计算了探测器的光子响应函数,并与6.129 MeV光子的测量结果非常吻合。在广泛的能量范围内,分别为实验飞行创建了高达300 MeV和50 MeV的中子和光子响应矩阵。

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