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Preliminary design of a laser accelerator beam line

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【作者】 尚勇朱昆曹超朱军高陈元荣郭之虞陈佳洱颜学庆

【Author】 SHANG Yong;ZHU Kun;CAO Chao;ZHU Jun-Gao;LU Yuan-Rong;GUO Zhi-Yu;CHEN Jia-Er;YAN Xue-Qing;State Key Laboratory of Nuclear Physics and Technology & Key Lab of High Energy Density Physics Simulation,CAPT, Peking University;

【机构】 State Key Laboratory of Nuclear Physics and Technology & Key Lab of High Energy Density Physics Simulation,CAPT, Peking University

【摘要】 A compact laser plasma accelerator(CLAPA) is being built at Peking University, which is based on an RPA-PSA mechanism or other acceleration mechanisms. The beam produced by this laser accelerator has the characteristics of short duration, high pulse current, large divergence angle, and wide energy spectrum. The beam cannot be produced by a normal ion source and accelerator. The space charge field in the initial is very strong.According to the beam parameters from preparatory experiments and theoretical simulations, a compact beam line is preliminarily designed. The beam line mainly consists of common transport elements to deliver proton beam with the energy of 1–50 MeV, energy spread of 0–±1% and current of 0–108 proton per pulse to satisfy the requirement of different experiments. The simulation result of a 15 MeV proton beam with an energy spread of ±1%, current of 400 m A, and final spot radius of 9 mm is presented in this paper.

【Abstract】 A compact laser plasma accelerator(CLAPA) is being built at Peking University, which is based on an RPA-PSA mechanism or other acceleration mechanisms. The beam produced by this laser accelerator has the characteristics of short duration, high pulse current, large divergence angle, and wide energy spectrum. The beam cannot be produced by a normal ion source and accelerator. The space charge field in the initial is very strong.According to the beam parameters from preparatory experiments and theoretical simulations, a compact beam line is preliminarily designed. The beam line mainly consists of common transport elements to deliver proton beam with the energy of 1–50 MeV, energy spread of 0–±1% and current of 0–108 proton per pulse to satisfy the requirement of different experiments. The simulation result of a 15 MeV proton beam with an energy spread of ±1%, current of 400 m A, and final spot radius of 9 mm is presented in this paper.

【基金】 Supported by NBRPC(2013CBA01502)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2014年11期
  • 【分类号】TL503
  • 【被引频次】1
  • 【下载频次】45
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