纳米尖端电子束库仑散射效应的数值研究

J. Qiang, J. Corlett, S. Lidia, H. Padmore, W. Wan, A. Zholents, M. Zolotorev, A. Adelmann
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引用次数: 6

摘要

为了产生高亮度光束,提出了在发射表面周围具有高加速度梯度的纳米尖端。然而,由于尖端尺寸小,即使对于少量电子,尖端附近的电荷密度也非常高。尖端附近的随机库仑散射会导致光束质量下降,导致额外的发射度增长和能量扩散。在本文中,我们使用直接相对论n体模型对这些效应进行了数值研究。我们发现,由于库仑散射,相对于平均场空间电荷计算,发射度增长和能量扩散可以显著增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical study of coulomb scattering effects on electron beam from a nano-tip
Nano-tips with high acceleration gradient around the emission surface have been proposed to generate high brightness beams. However, due to the small size of the tip, the charge density near the tip is very high even for a small number of electrons. The stochastic Coulomb scattering near the tip can degrade the beam quality and cause extra emittance growth and energy spread. In the paper, we present a numerical study of these effects using a direct relativistic N-body model. We found that emittance growth and energy spread, due to Coulomb scattering, can be significantly enhanced with respect to mean-field space-charge calculations.
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