100 MeV射频电子直线加速器束流动力学研究

R. Dash, B. Nayak, Archana Sharma, K. C. Mittal
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引用次数: 0

摘要

基于直线加速器的能量为30-100 MeV、数千瓦的脉冲电子束通过光核和光裂变反应机制产生中子,用于中子束辐照应用领域,如材料科学研究和中子截面、散射截面、俘获截面、裂变截面的测量。相当大的光束功率显然要求最大限度地减少高能粒子在加速和传输过程中的损失。本文介绍了利用光束动力学代码ASTRA和ELEGANT对100 MeV和100 kW的直线加速器进行高质量光束输出的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beam dynamics study of a 100 MeV RF electron linac
Linac based pulsed electron beams of energy 30-100 MeV and several kilowatts are used to generate neutrons by photo-nuclear and photo-fission reaction mechanisms for neutron beam irradiation application areas like material science studies and measurement of neutron cross-section, scattering cross-section, capture cross section, fission cross section. Considerable high beam power obviously demands minimizing the high-energy particles loss during their acceleration and transport. This paper presents the simulation results for a 100 MeV and 100 kW linac using the beam dynamics codes ASTRA and ELEGANT for delivery of a high quality beam.
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