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Longitudinal instability caused by long drifts in the C-ADS injector-Ⅰ

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【作者】 李智慧唐靖宇闫芳耿会平孟才孙彪程鹏郭臻孙纪磊

【Author】 LI Zhi-Hui TANG Jing-Yu YAN Fang GENG Hui-Ping MENG Cai SUN Biao CHENG Peng GUO Zhen SUN Ji-Lei Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China

【机构】 Institute of High Energy Physics,Chinese Academy of Sciences

【摘要】 The period length is usually much larger than the cavity effective length in a low energy superconducting linac.The long drifts between cavities will not only decrease the acceptance of the linac, but also lead to possible instability. The linac will be more sensitive to mismatch and other perturbations. From the longitudinal motion equation, the function which describes the parametric resonance is deduced and the relation between the instability region and the cavity filling factor is discussed. It indicates that if the zero current phase advance per period is kept below 90°, instability driven by parametric resonance will never occur. The space charge effect will enhance the instability, so that a stricter limitation on the phase advance per cell is required. From the numerical simulation results for two different schemes of Injector-Ⅰ of the C-ADS driver linac, one can find that even with just three cells in the unstable region, significant emittance growth can be observed. Further investigations show that it is apt to produce halo particles under resonance, and the machine becomes more sensitive to errors and mismatches. Therefore, it is important to keep all cells in the stable region throughout the linac of very high beam power to minimize beam losses.

【Abstract】 The period length is usually much larger than the cavity effective length in a low energy superconducting linac.The long drifts between cavities will not only decrease the acceptance of the linac, but also lead to possible instability. The linac will be more sensitive to mismatch and other perturbations. From the longitudinal motion equation, the function which describes the parametric resonance is deduced and the relation between the instability region and the cavity filling factor is discussed. It indicates that if the zero current phase advance per period is kept below 90°, instability driven by parametric resonance will never occur. The space charge effect will enhance the instability, so that a stricter limitation on the phase advance per cell is required. From the numerical simulation results for two different schemes of Injector-Ⅰ of the C-ADS driver linac, one can find that even with just three cells in the unstable region, significant emittance growth can be observed. Further investigations show that it is apt to produce halo particles under resonance, and the machine becomes more sensitive to errors and mismatches. Therefore, it is important to keep all cells in the stable region throughout the linac of very high beam power to minimize beam losses.

【基金】 Supported by National Natural Science Foundation of China(10875099, 91126003);China ADS Project (XDA03020000);Institute of High Energy Physics Special Funding (Y0515550U1)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2013年03期
  • 【分类号】TL53
  • 【被引频次】1
  • 【下载频次】35
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