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High-flux white neutron source based on p(35)-Be reactions for activation experiments at NPI

机译:基于p(35)-Be反应的高通量白中子源用于NPI的活化实验

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The concept of International Fusion Material Irradiation Facility (IFMIF) is based on the d(40)-Li neutron source reaction which produces the white neutron spectrum with mean energy of 14 MeV, energy range with high intensity of neutron beam up to 35 MeV, and weak tail up to 55 MeV. At the Nuclear Physics Institute of the ASCR in Rez near Prague, the source reaction of p+Be was investigated for proton energy of 35 MeV and beam current intensity of 9.2 μA. The produced white spectrum with neutron flux up to 10~(11) cm~(-2) s~(-1) was determined by the dosimetry foils activation technique at two sample-to-target distances and validated against the Monte Carlo predictions. The neutron field of these high-flux p(35 )-Be white neutron source represents the useful tool for experimental simulation of the spectrum of the IFMIF facility, validating the activation cross-section data in the energy range relevant to the IFMIF, studying the radiation hardness of electronics against the high-energy neutron fields, and various activation experiments.
机译:国际聚变材料辐照设施(IFMIF)的概念基于d(40)-Li中子源反应,产生的白色中子光谱的平均能量为14 MeV,能量范围为高中子束强度,最高可达35 MeV,和弱尾巴,最高55 MeV。在布拉格附近Rez的ASCR核物理研究所,研究了p + Be的源反应,其质子能量为35 MeV,束流强度为9.2μA。通过剂量计箔激活技术在两个样品到目标的距离处确定了产生的中子通量高达10〜(11)cm〜(-2)s〜(-1)的白色光谱,并根据蒙特卡洛预测进行了验证。这些高通量p(35)-Be是白色中子源的中子场代表了IFMIF设施的光谱实验仿真的有用工具,可验证与IFMIF相关的能量范围内的活化截面数据,电子对高能中子场的辐射硬度,以及各种活化实验。

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