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合肥光源逐束团相位测量及纵向不稳定性诊断
引用本文:唐雷雷,卢平,孙葆根,周泽然,吴睿喆.合肥光源逐束团相位测量及纵向不稳定性诊断[J].强激光与粒子束,2021,33(10):104001-1-104001-7.
作者姓名:唐雷雷  卢平  孙葆根  周泽然  吴睿喆
作者单位:中国科学技术大学 国家同步辐射实验室,合肥 230029
基金项目:国家自然科学基金项目(11805204, 12075236)
摘    要:为了研究储存环束流多束团纵向运动特性,在合肥光源(HLS-II)上研制了一套逐束团相位测量系统。该系统利用示波器直接采集BPM和信号,采用过零点检测法、时间差分(Temporal Difference, TD)法相结合的方法从BPM和信号中提取出逐束团相位。介绍了逐束团相位测量系统的系统构架、相位提取方法以及在HLS-II上的一些实验结果。通过对该系统记录的5 ms时间长度的逐束团多圈相位数据的离线分析,得到多束团纵向运动的同步振荡的频率、纵向工作点、束团振荡的模式信息以及振荡模式增长率等特征信息,诊断出HLS-II在top-off恒流运行期间存在2个较强的纵向耦合束团不稳定模式,并提取出了2个振荡模式的增长率。该系统的逐束团相位测量结果及相关纵向不稳定性分析可为机器研究、纵向反馈系统调试评估及高频RF系统的性能评估等提供参考。

关 键 词:合肥光源    逐束团相位    时间差分法    同步振荡    纵向不稳定性    小波去噪    模式分析
收稿时间:2021-04-28

Bunch-by-bunch phase measurement and longitudinal instabilities diagnostics at Hefei Light Source
Institution:National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei 230029, China
Abstract:To study the longitudinal motion characteristics of multi bunches in a storage ring, a bunch-by-bunch phase measurement system is developed at HLS-II. The system uses oscilloscope to collect BPM sum-signal directly, and take zero-crossing detection method combined with temporal difference (TD) method to extract the phase of bunch-by-bunch from BPM sum-signal. The system architecture, phase extraction method and some experimental results at HLS-II are introduced in this paper. In the experiment, through off-line analysis of the phase data of 5 ms bunch-by-bunch multi turns recorded by the system, the characteristic information of the synchrotron oscillation frequency, the longitudinal tuning value, the modes information of bunches oscillation and the growth rate of the oscillation mode are obtained. It is diagnosed that there are two strong longitudinal coupled-bunch unstable modes at HLS-II during the top-off constant-current operation, and the growth rates of the two oscillation modes are extracted. The results of bunch-by-bunch phase measurement and the analysis of longitudinal instability can provide references for machine study, longitudinal feedback system tuning and performance evaluation of high frequency RF system.
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