衍射极限环光源纵向束流注入非线性优化 |
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引用本文: | Shen Siqi,Tian Shunqiang,Zhang Qinglei,Wu Xu,Zhao Zhentang. 衍射极限环光源纵向束流注入非线性优化[J]. 强激光与粒子束, 2019, 31(12): 125101-1-125101-6. DOI: 10.11884/HPLPB201931.190196 |
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作者姓名: | Shen Siqi Tian Shunqiang Zhang Qinglei Wu Xu Zhao Zhentang |
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作者单位: | 1.中国科学院 上海应用物理研究所,上海 201800 |
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摘 要: | 下一代同步辐射光源储存环动力学孔径较小,因而束流注入困难,可以通过纵向束流注入解决这一问题。为了使用更长的kicker脉冲,有必要降低高频频率以增加注入束流到储存束流的时移。因为同步辐射运动,时移更长的束流有更高的动量偏差,所以通过该方法进行注入需要储存环提供足够大的能量接受度和动力学孔径。用SSRF-U的候选磁聚焦结构来展示纵向束流注入非线性优化的可行方法。由一系列高频频率的最佳结果可知,低于界限频率时kicker脉冲不会继续增长。在束流模拟中,采用界限频率与合适六级铁强度,可使SSRF-U储存环束流注入达到最高效率。
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关 键 词: | 纵向束流注入 非线性优化 动力学孔径 同步辐射相位震荡 衍射极限环光源 |
收稿时间: | 2019-06-03 |
Nonlinear optimization for longitudinal beam injection in diffraction-limited synchrotron light sources |
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Affiliation: | 1.Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China2.University of Chinese Academy of Sciences, Beijing 100049, China3.Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201204, China |
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Abstract: | Storage rings of the next generation synchrotron light sources have quite small dynamic apertures with which transverse beam injection can hardly be efficient. The longitudinal beam injection may be a solution to this problem. To apply a longer kicker pulse, it is necessary to increase time offset of the injected beam to the stored one by reducing RF frequency. The beam with a longer time offset will have a higher momentum deviation due to synchrotron motion, thus full injection of this method requires the storage ring to provide large enough energy acceptance and off-momentum dynamic aperture. A candidate lattice of the upgraded Shanghai Synchrotron Radiation Facility (SSRF-U) was used to nonlinearly optimize the longitudinal beam injection. With the optimal results of a series of RF frequencies, it is found that there is a critical RF frequency below which lowering frequency could not help to lengthen the kicker pulse in a given lattice. The beam injection into the SSRF-U storage ring was simulated and reached high efficiency with its critical RF frequency and optimal sextupole gradients. |
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