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Transverse profile of the electron beam for the RHIC electron lenses

机译:RHIC电子透镜的电子束横向轮廓

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摘要

The transverse profile of the electron beam plays a very important role in assuring the success of the electron lens beam-beam compensation, as well as its application in space charge compensation. To compensate for the beam-beam effect in the Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Laboratory, we recently installed and commissioned two electron lenses. In this paper, we describe, via theory and simulations using the code Parmela, the evolution of the density of the electron beam with space charge within an electron lens from the gun to the main solenoid. Our theoretical analysis shows that the change in the beam transverse density is dominated by the effects of the space charge induced longitudinal velocity reduction, not by those of transverse Coulomb collisions. We detail the transverse profile of RHIC electron-lens beam, measured via the YAG screen and pinhole detector, and also describe its profile that we assessed from the signal of the electron-backscatter detector (eBSD) via scanning the electron beam with respect to the RHIC beam. We verified, in simulations and experiments, that the distribution of the transverse electron beam is Gaussian throughout its propagation in the RHIC electron lens.
机译:电子束的横向轮廓在确保电子透镜束补偿成功以及其在空间电荷补偿中的应用中起着非常重要的作用。为了补偿布鲁克海文国家实验室的相对论重离子对撞机(RHIC)中的束束效应,我们最近安装并调试了两个电子透镜。在本文中,我们通过理论和使用代码Parmela进行的模拟来描述电子枪中电子束的密度随空间电荷从枪到主螺线管的演变。我们的理论分析表明,束横向密度的变化主要受空间电荷引起的纵向速度降低的影响,而不是横向库仑碰撞的影响。我们详细介绍了通过YAG屏幕和针孔检测器测量的RHIC电子透镜束的横向轮廓,并描述了它的轮廓,我们通过扫描电子束相对于电子背向散射检测器(eBSD)的信号评估了该轮廓。 RHIC光束。在仿真和实验中,我们验证了横向电子束在RHIC电子透镜中的整个传播过程中都是高斯分布。

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