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Target alignment in the Shen-Guang Ⅱ Upgrade laser facility

查看全文 作  者:Lei [1,2]Ren;Ping [1,2]Shao;Dongfeng [1,2]Zhao;Yang [1,2]Zhou;Zhijian [1,2]Cai;Neng [1,2]Hua;Zhaoyang [1,2]Jiao;Lan [1,3]Xia;Zhanfeng [1,2]Qiao;Rong [1,2]Wu;Lailin [1,3]Ji;Dong [1,3]Liu;Lingjie [1,2]Ju;Wei [1,2]Pan;Qiang [1,2]Li;Qiang [1,2]Ye;Mingying [1,2]Sun;Jianqiang [1,2]Zhu;Zunqi [1,2]Lin 高影响力作者 机构地区:[1]National Laboratory on High Power Laser and Physics, Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;[2]Key Laboratory of High Power Laser and Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences;[3]Shanghai Institute of Laser Plasma, China Academy of Engineering Physics高影响力机构 出  处:《High Power Laser Science and Engineering》索引2018年第6卷第1期,共9页高影响力期刊 摘  要:The Shen-Guang II Upgrade(SG-Ⅱ-U) laser facility consists of eight high-power nanosecond laser beams and one shortpulse picosecond petawatt laser. It is designed for the study of inertial confinement fusion(ICF), especially for conducting fast ignition(FI) research in China and other basic science experiments. To perform FI successfully with hohlraum targets containing a golden cone, the long-pulse beam and cylindrical hohlraum as well as the short-pulse beam and cone target alignment must satisfy tight specifications(30 and 20 μm rms for each case). To explore new ICF ignition targets with six laser entrance holes(LEHs), a rotation sensor was adapted to meet the requirements of a three-dimensional target and correct beam alignment. In this paper, the strategy for aligning the nanosecond beam based on target alignment sensor(TAS) is introduced and improved to meet requirements of the picosecond lasers and the new six LEHs hohlraum targets in the SG-II-U facility. The expected performance of the alignment system is presented, and the alignment error is also discussed. 关 键 词:laser drivers petawatt lasers spherical hohlraum target alignment target area
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