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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Empirical estimation of photoneutron energy distribution in high-energy electron accelerators
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Empirical estimation of photoneutron energy distribution in high-energy electron accelerators

机译:高能电子加速器中光中子能量分布的经验估计

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摘要

To assist neutron flux estimation in high-energy electron accelerators, an empirical expression has been obtained for the energy differential neutron yield distributions from the Giant Dipole Resonance (GDR) mechanism for 100 MeV to 2.5 GeV electrons incident on thick targets. Calculated neutron yield distributions from the FLUKA code have been used to generate an expression relating neutron yield energy distribution per unit incident electron energy with target mass, charge, and neutron separation energy. Data for 16 target elements from Ti to U have been fitted to obtain a coupled linear and Maxwellian expression. The GDR and total neutron (including quasi deuteron and delta resonance modes) yields calculated using FLUKA show dominance of GDR neutrons.
机译:为了协助高能电子加速器中的中子通量估算,从巨型偶极子共振(GDR)机理中获得了100 MeV到2.5 GeV电子入射到厚靶上的能量差中子产率分布的经验表达式。从FLUKA代码计算出的中子屈服分布已用于生成将单位入射电子能量的中子屈服能量分布与目标质量,电荷和中子分离能相关的表达式。拟合了从Ti到U的16个目标元素的数据,以获得线性和麦克斯韦耦合的表达式。使用FLUKA计算得出的GDR中子和总中子(包括准氘核和δ共振模)产量显示出GDR中子的优势。

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