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上海光源储存环线性模型校正
引用本文:张满洲,后接,李浩虎,陈建辉,田顺强,张文志.上海光源储存环线性模型校正[J].原子核物理评论,2011,28(3):290-095.
作者姓名:张满洲  后接  李浩虎  陈建辉  田顺强  张文志
作者单位:中国科学院上海应用物理研究所, 上海201204
摘    要:上海光源是我国刚刚建成的一台第三代中能同步辐射光源。为使得上海光源能够严格工作在设计状态下, 在调试过程中进行了一系列线性模型的校正, 主要包括闭轨校正、 基于束流准直(BBA)校正、 LOCO参数校正和线性耦合校正。经过反复的线性模型校正以后, 上海光源储存环的闭轨畸变均方根误差在水平和垂直两个方向可以分别控制到50和60 μm的水平, 包络函数畸变和色散函数畸变都可以控制到小于1%的状态, 工作点和束流发射度基本上校正到了设计值。线性耦合校正能够方便地将储存环的耦合度从0.02%调节到2%左右。调试结果表明, 上海光源采取的这一套线性模型校正方法, 能够有效地将上海光源的工作状态校正到设计状态, 并且为其他模式的调节奠定了基础。In the commissioning stage of Shanghai Synchrotron Radiation Facility(SSRF) storage ring, several methods were used to correct the linear optics. Beam Based Alignment(BBA) was used for BPM\|Quadrupole offsets measurement; Response matrix was used for orbit correction; LOCO was used for linear optics fitting, and quadrupoles strength were adjusted to correction the beta function; coupling was measured and corrected by skew quadrupoles. After correction, closed orbit are reduced to 50/60 μm in hortizontal and vertical plane; β beating and dispersion errors are less than 1%; betatron tune and emmittance are closed to the design value; betatron coupling also can be adjusted from 0.02% to 2%. These methods have been proved to be useful for storage ring calibrations, with the help of these methods, SSRF storage ring can be tuned to the design model and other model easily.

关 键 词:闭轨校正    基于束流准直校正    线性光学参数校正    耦合校正
收稿时间:1900-01-01

Linear Optics Model Correction at SSRF Storage Ring
ZHANG Man-zhou,HOU Jie,LI Hao-hu,CHEN Jian-hui,TIAN Shun-qiang,ZHANG Wen-zhi.Linear Optics Model Correction at SSRF Storage Ring[J].Nuclear Physics Review,2011,28(3):290-095.
Authors:ZHANG Man-zhou  HOU Jie  LI Hao-hu  CHEN Jian-hui  TIAN Shun-qiang  ZHANG Wen-zhi
Institution:Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai, 201204, China
Abstract:In the commissioning stage of Shanghai Synchrotron Radiation Facility(SSRF) storage ring, several methods were used to correct the linear optics. Beam Based Alignment(BBA) was used for BPM\|Quadrupole offsets measurement; Response matrix was used for orbit correction; LOCO was used for linear optics fitting, and quadrupoles strength were adjusted to correction the beta function; coupling was measured and corrected by skew quadrupoles. After correction, closed orbit are reduced to 50/60 μm in hortizontal and vertical plane; β beating and dispersion errors are less than 1%; betatron tune and emmittance are closed to the design value; betatron coupling also can be adjusted from 0.02% to 2%. These methods have been proved to be useful for storage ring calibrations, with the help of these methods, SSRF storage ring can be tuned to the design model and other model easily.
Keywords:COD correction  beam based alignment  linear optics correction  coupling correction  
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