Implementing Traditional Longitudinal Beam Focusing in UMER

Kathleen E. Hamilton, Levon Dovlatvan, D. Matthew, D. Sutter, S. Bernal, T. Antonsen, B. Beaudoin
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Abstract

The University of Maryland Electron Ring (UMER) is a dedicated research accelerator facility for studying the physics of high-intensity charged particle beams. Advancing the capabilities of the longitudinal confinement system paves the way for multi-bunch electron confinement, allowing UMER to extend its performance and modes of operation for various experiments on longitudinal dynamics. The research reported here employs an existing induction cell [1], and a radiofrequency (RF) amplifier to mimic traditional RF cavity confinement. By applying sinusoidal RF waves at the revolution frequency with synchronous phase angle equal to zero, we can confine an electron beam in the wave's linear regions. To additionally combat particle loss, we calculated the separatrices-the areas of phase space within which the beam is longitudinally confined-with a central synchronous particle.
在UMER中实现传统纵束聚焦
马里兰大学电子环(UMER)是一个专门用于研究高强度带电粒子束物理的研究加速器设施。推进纵向约束系统的能力为多束电子约束铺平了道路,允许UMER扩展其性能和操作模式,用于各种纵向动力学实验。本文报道的研究采用现有的感应电池[1]和射频放大器来模拟传统的射频腔限制。通过施加同步相位角等于零的旋转频率的正弦射频波,我们可以将电子束限制在波的线性区域内。为了进一步对抗粒子损失,我们计算了分离度——光束纵向限制在其中的相空间区域——与中心同步粒子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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