TY - JOUR
T1 - Design and performance of final optics assembly in SG-II Upgrade laser facility
AU - Jiao, Zhaoyang
AU - Shao, Ping
AU - Zhao, Dongfeng
AU - Wu, Rong
AU - Ji, Lailin
AU - Wang, Li
AU - Xia, Lan
AU - Liu, Dong
AU - Zhou, Yang
AU - Ju, Lingjie
AU - Cai, Zhijian
AU - Ye, Qiang
AU - Qiao, Zhanfeng
AU - Hua, Neng
AU - Li, Qiang
AU - Pan, Wei
AU - Ren, Lei
AU - Sun, Mingying
AU - Zhu, Jianqiang
AU - Lin, Zunqi
N1 - Publisher Copyright:
©
PY - 2018
Y1 - 2018
N2 - In high power laser facility for inertial confinement fusion research, final optics assembly (FOA) plays a critical role in the frequency conversion, beam focusing, color separation, beam sampling and debris shielding. The design and performance of FOA in SG-II Upgrade laser facility are mainly introduced here. Due to the limited space and short focal length, a coaxial aspheric wedged focus lens is designed and applied in the FOA configuration. Then the ghost image analysis, the focus characteristic analysis, the B integral control design and the optomechanical design are carried out in the FOA design phase. In order to ensure the FOA performance, two key technologies are developed including measurement and adjustment technique of the wedged focus lens and the stray light management technique based on ground glass. Experimental results show that the design specifications including laser fluence, frequency conversion efficiency and perforation efficiency of the focus spot have been achieved, which meet the requirements of physical experiments well.
AB - In high power laser facility for inertial confinement fusion research, final optics assembly (FOA) plays a critical role in the frequency conversion, beam focusing, color separation, beam sampling and debris shielding. The design and performance of FOA in SG-II Upgrade laser facility are mainly introduced here. Due to the limited space and short focal length, a coaxial aspheric wedged focus lens is designed and applied in the FOA configuration. Then the ghost image analysis, the focus characteristic analysis, the B integral control design and the optomechanical design are carried out in the FOA design phase. In order to ensure the FOA performance, two key technologies are developed including measurement and adjustment technique of the wedged focus lens and the stray light management technique based on ground glass. Experimental results show that the design specifications including laser fluence, frequency conversion efficiency and perforation efficiency of the focus spot have been achieved, which meet the requirements of physical experiments well.
KW - final optics assembly
KW - high power laser facility
KW - inertial confinement fusion
UR - https://www.scopus.com/pages/publications/85065564824
U2 - 10.1017/hpl.2018.8
DO - 10.1017/hpl.2018.8
M3 - 文章
AN - SCOPUS:85065564824
SN - 2095-4719
VL - 6
JO - High Power Laser Science and Engineering
JF - High Power Laser Science and Engineering
M1 - 1800008
ER -