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STUDY OF LONGITUDINAL SPACE-CHARGE WAVE DYNAMICS IN SPACE-CHARGE DOMINATED BEAMS

机译:空间电荷主导光束中纵向空间电荷波动动力学研究

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Understanding the dynamics of longitudinal space-charge waves is very important for advanced accelerator research. Although analytical solutions of space-charge wave equations based on the cold fluid model exist in one dimension, there are few results for two-dimensional wave evolution. One-dimensional theory predicts two eigen solutions, given an initial perturbation. One is called the fast wave, which moves toward the beam head in the beam frame and the other is termed the slow wave, which moves backward in the beam frame. In this paper, we report experimental results of space charge wave studies conducted on a 2.3 meter long straight beam line at the University of Maryland. An energy analyzer is used to directly measure the energy of space-charge waves at the end of the transport line, which demonstrates the decomposition of an initial current perturbation into a slow wave and a fast wave. A PIC code, WARP [1], is used to simulate this experiment and the behavior of longitudinal waves in space-charge dominated beams in an R-Z geometry. Simulations shown here also demonstrate if the initial current and velocity perturbation strengths are chosen properly, only fast or slow waves could be selectively generated.
机译:了解纵向空间电荷波的动态对于先进的加速器研究非常重要。尽管基于冷流体模型的空间电荷波方程的分析解,但是在一个维度中存在少数结果对二维波进化的结果很少。一维理论预测了初始扰动的两个特征溶液。一种被称为快速波,其朝向梁框架中的梁头移动,另一个被称为慢波,该慢波在梁框架中向后移动。在本文中,我们报告了马里兰大学的2.3米长的直梁线上进行的空间电荷波研究的实验结果。能量分析仪用于直接测量运输线末端的空间电荷波的能量,这证明了初始电流扰动的分解成慢波和快波。 WARP [1]的PIC代码用于模拟该实验和R-Z几何中的空间电荷主导光束中的纵向波的行为。这里所示的模拟还示出了是否正确选择初始电流和速度扰动强度,只能选择性地产生快速或慢波。

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