低能电子束加速的DLA平面与周期结构

Andrii V. Vasyliev, G. Sotnikov, A. Povrozin, O.O. Svistunov
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引用次数: 0

摘要

利用平面和周期芯片结构,分析了激光脉冲激发表面波对带电粒子束加速速率与300 keV能量的关系。结果表明,在第二种工作模式下使用周期结构时,加速度比在第一种工作模式下使用周期结构时减小。研究还表明,与使用周期性芯片结构相比,使用平面介电结构时的加速速率明显更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DLA Flat vs Periodic Structure for Low Energy Electron Beam Acceleration
The dependence of the acceleration rate of charged particle bunches with the energy of 300 keV by a surface wave excited by a laser pulse is analyzed using flat and periodic chip structures. It is shown that when using periodic structures with the 2nd operating spatial mode, there is a decrease in the acceleration rate in comparison with the use of periodic structures with the 1st operation mode. It is also demonstrated that the acceleration rate when using a flat dielectric structure is significantly higher in comparison with a periodic chip structure.
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