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A systematic experimental study of thick-target neutron yield for high-energy heavy ions

机译:高能量重离子厚度靶中子产量的系统实验研究

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We measured angular and energy distributions of neutrons produced by 100 and 180 MeV/nucleon He, 100, 180 and 400 MeV/nucleon C, 100, 180 and 400 MeV/nucleon Ne ions stopping in thick carbon, aluminium, copper and lead targets using the heavy ion medical accelerator of the National Institute of Radiological Sciences. The neutron spectra in the forward direction have broad peaks located at about 60-70percent of the incident particle energy per nucleon due to break-up process and spreading up to almost twice as much as the projectile energy per nucleon. The neutron spectra at all angles consists of two components of cascade neutrons and evaporation neutrons. THe experimental results are also compared with the calculations using the HIC and LCS codes, and the calulated results generally agree with the measured ones within a factor of 2 margin of accuracy, except around the high energy end in the forward direction. This systematic study on neutron production from thick targets by high-energy heavy ions is a first experimental work and will be useful in the shielding design of high-energy heavy ion accelerator facilities.
机译:我们测量了由100和180mev /核心的中子的角度和能量分布,100,180和400mev /核C,100,180和400mev /核素Ne离子在厚碳,铝,铜和铅靶中停止国家放射科学研究所的重离子医疗加速器。前向方向上的中子谱具有,由于分解过程,每核电的入射粒子能量为约60-80%,并且每核这些射精能量高达几乎是射弹能量的两倍多。所有角度的中子谱由梯级中子和蒸发中子的两个部件组成。使用HIC和LCS码的计算也将实验结果与计算结果进行了比较,并且估计结果通常与测量的结果一致地同意2倍的准确性边缘,除了在向前方向上的高能量端。这种对高能量重离子的厚靶产生的中子生产系统的系统研究是第一个实验工作,可用于高能量重离子加速器设施的屏蔽设计。

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