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首页> 外文期刊>Physical Review. Accelerators and Beams >Beam loss distribution calculation and collimation efficiency simulation of a cooler storage ring in a heavy ion research facility
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Beam loss distribution calculation and collimation efficiency simulation of a cooler storage ring in a heavy ion research facility

机译:重离子研究设备中冷却器存储环的束流损失分布计算和准直效率模拟

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摘要

The Heavy Ion Research Facility in Lanzhou is an ion cooler storage ring facility in China's Institute of Modern Physics. The beams are accumulated, electron cooled, accelerated, and extracted from the main cooler storage ring (CSRm) to the experimental ring or different terminals. The heavy ion beams are easily lost at the vacuum chamber along the CSRm when it is used to accumulate intermediate charge state particles. The vacuum pressure bump due to the ion-induced desorption in turn leads to an increase in beam loss rate. In order to avoid the complete beam loss, the collimation system is investigated and planned to be installed in the CSRm. First, the beam loss distribution is simulated considering the particle charge exchanged process. Then the collimation efficiency of the lost particles is calculated and optimized under different position and geometry of the collimators and beam emittance and so on. Furthermore, the beam orbit distortion that is caused by different types of errors in the ring will affect the collimation efficiency. The linearized and inhomogeneous equations of particle motion with these errors are derived and solved by an extended transfer matrix method. Actual magnet alignment errors are adopted to investigate the collimation efficiency of the lost particles in the CSRm. Estimation of the beam loss positions and optimization of the collimation system is completed by a newly developed simulation program.
机译:兰州的重离子研究设施是中国现代物理研究所的离子冷却器存储环设施。束被聚集,电子冷却,加速并从主冷却器存储环(CSRm)引出到实验环或不同的端子。当重离子束用于积累中间电荷状态粒子时,很容易沿着CSRm在真空腔中丢失。由于离子引起的解吸而引起的真空压力颠簸又导致束流损失率的增加。为了避免完全的光束损失,对准直系统进行了研究,并计划将其安装在CSRm中。首先,考虑了粒子电荷交换过程,模拟了光束损耗分布。然后在准直器的不同位置和几何形状以及光束发射率等条件下,计算并优化了损失粒子的准直效率。此外,由环中不同类型的误差引起的束轨道畸变将影响准直效率。利用扩展的传递矩阵方法,推导并求解了具有这些误差的粒子运动的线性化和非均匀化方程。采用实际的磁体对准误差来研究CSRm中丢失的粒子的准直效率。光束损失位置的估计和准直系统的优化由新开发的仿真程序完成。

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