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Beam halo formation and beam loss induced by image-charge effects in a small-aperture alternating-gradient focusing system

机译:小光圈交替梯度聚焦系统中图像电荷效应引起的束晕形成和束流损失

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摘要

Summary form only given. The image-charge effects on an intense charged-particle beam propagating through an alternating-gradient focusing channel with a small aperture, circular, perfectly conducting pipe are studied using a test-particle model. For a well-matched elliptical beam with the Kapchinskij-Vladimirskij (KV) distribution, it is found that halo formation and beam loss is induced by nonlinear fields due to image charges on the wall. The halo formation and chaotic particle motion dependent sensitively on the system parameters: filling factor of the quadrupole focusing field, vacuum phase advance, beam perveance, and the ratio of the beam size to the aperture. Furthermore, the percentage of beam loss to the conductor wall is calculated as a function of propagating distance and aperture. The theoretical results are compared with PIC code simulation results.
机译:摘要表格仅给出。使用测试粒子模型研究了通过具有小孔径,圆形,完全导电管的交流梯度聚焦通道传播的强烈带电粒子波束的图像电荷效应。对于具有Kapchinskij-Vladimirskij(KV)分布的良好匹配的椭圆梁,发现由墙壁上的图像电荷引起的光环形成和光束损耗。晕染和混沌粒子运动敏感地依赖于系统参数:四极孔聚焦场的填充因子,真空相提前,光束偏离,以及光束尺寸与孔的比率。此外,作为传播距离和孔的函数计算对导体壁的光束损耗的百分比。与PIC代码仿真结果进行比较理论结果。

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