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Off-Axis Space-Charge Limit for a Bunched Electron Beam in a Coaxial Conducting Structure

机译:同轴导电结构中束状电子束的离轴空间电荷极限

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摘要

We derive a space-charge limit for a circularly symmetric bunched electron beam that has its center-of-mass slightly offset from the axis of a circularly symmetric coaxial conducting structure. The limit is a necessary condition for beam stability resulting from the following two forces acting on the center-of-mass of the electron bunch: 1) the radial deflecting force due to the induced surface charges and currents on the conducting structure and 2) the confining force due to the presence of an external solenoidal magnetic-focusing field. We show explicit calculations of the space-charge limits for beam-charge distributions, which in the radial direction have zero thickness, i.e., thin annular beams, and in the axial direction have either zero longitudinal thickness or Gaussian like distributions. Finally, we show how this limit is applicable to a previous design study of the University of California, Davis/Stanford Linear Accelerator Center 2.8-GHz coaxial ubitron oscillator.
机译:我们推导了一个圆形对称束电子束的空间电荷极限,该束电子束的质量中心与圆形对称同轴导电结构的轴略有偏移。该极限是由以下两个作用在电子束的质心上的力所产生的束稳定的必要条件:1)由于在导电结构上感应的表面电荷和电流而引起的径向偏转力,以及2)由于存在外部螺线管电磁聚焦场而产生限制力。我们示出了对束电荷分布的空间电荷极限的显式计算,该束电荷分布在径向方向上具有零厚度,即,薄的环形束,并且在轴向方向上具有零纵向厚度或高斯分布。最后,我们展示了该限制如何适用于加利福尼亚大学戴维斯分校/斯坦福线性加速器中心2.8 GHz同轴泛电子振荡器的先前设计研究。

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