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2.5-Dimensional numerical simulation of a high-current ion linear induction accelerator

机译:大电流离子线性感应加速器的2.5维数值模拟

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Results are presented from numerical particle simulations of the transport and acceleration of a high-current tubular ion beam through one to five magnetically insulated accelerating gaps. The ion beam is neutralized by an accompanying electron beam. The possibility of transporting a high-current neutralized ion beam through five cusps is demonstrated. It is shown that the quality of the distribution function of a high-current ion beam at the exit from the accelerator can be substantially improved by optimizing the energy of the neutralizing electron beam. It is also shown that, by injecting additional high-current electron beams into the cusps, the accelerated ion beam can be made more monoenergetic and its divergence can be reduced.
机译:结果是通过大颗粒管状离子束通过一到五个磁绝缘加速间隙的传输和加速的数值粒子模拟得出的。离子束被伴随的电子束中和。演示了通过五个尖端传输大电流中和离子束的可能性。结果表明,通过优化中和电子束的能量,可以大幅度提高加速器出口处大电流离子束的分布函数的质量。还显示出,通过将额外的高电流电子束注入到尖端,可以使加速的离子束更加单能,并且可以减小其发散。

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