Du Ze, He Peilin, Zhu Guangyu, Caspers Fritz, Li Zhixue, Wu Junxia, Hu Xuejing, Zhang Zhaolong, Xie Hongming, Ni Fafu, Zhang Yong, Yang Yongliang, Yang Jiancheng, Meng Jun
Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China.
CERN, 1211 Geneva 23, Switzerland.
Rev Sci Instrum. 2022 Apr 1;93(4):043306. doi: 10.1063/5.0083344.
A diagonal-cut type beam position monitor (BPM) has been developed for the High Intensity Heavy-Ion Accelerator Facility (HIAF) project at the Institute of Modern Physics. Compared with other types of BPMs, the diagonal-cut type BPM has almost perfect position linearity, i.e., no non-linear correction required, which is advantageous for beams that are transversally large and have a complex charge distribution. The key parameters for the diagonal-cut type BPM have been simulated and optimized in detail and systematically herein. It was found that the crosstalk is improved by ∼10 dB at 160 MHz by insertion of a separate ring between two horizontal or vertical electrodes of the BPM made of stainless steel with vacuum as a dielectric. Furthermore, the longitudinal and transverse numerical simulation to evaluate the beam impedance on the diagonal-cut type BPM has been performed. The results for the crosstalk, position sensitivity, and electrode capacitance to ground obtained from simulations and laboratory measurements agree well. The vacuum of the BPM prototype after baking out at 250 °C for 72 h is better than 1.0 × 10 mbar. The simulated and on-line measured BPM output signal magnitude results are consistent with each other. This diagonal-cut type BPM structure will be considered for application to the HIAF project as a priority.
中国科学院近代物理研究所为强流重离子加速器装置(HIAF)项目研制了一种斜切式束流位置监测器(BPM)。与其他类型的BPM相比,斜切式BPM具有近乎完美的位置线性度,即无需非线性校正,这对于横向尺寸大且电荷分布复杂的束流是有利的。本文对斜切式BPM的关键参数进行了详细而系统的模拟和优化。研究发现,在由不锈钢制成的、以真空为电介质的BPM的两个水平或垂直电极之间插入一个单独的环,可使160 MHz时的串扰提高约10 dB。此外,还对斜切式BPM上的束流阻抗进行了纵向和横向数值模拟。模拟结果与实验室测量得到的串扰、位置灵敏度和电极对地电容结果吻合良好。BPM原型在250 °C烘烤72 h后的真空度优于1.0×10 mbar。模拟的和在线测量的BPM输出信号幅度结果相互一致。这种斜切式BPM结构将优先考虑应用于HIAF项目。