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KAERI laser facility for high energy density plasma research

机译:KAERI激光设备用于高能量密度等离子体研究

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Summary form only given. The 1 kJ Nd:Glass laser at KAERI has symmetrically irradiated a SiO2 shell from tetrahedral direction for uniform compression of a spherical target since August 2015. A spherical target chamber with turning mirrors, focusing lenses and monitoring instrument was installed to generate a high density laser-plasma by irradiating four laser beams. A X-ray multi-pin holes camera and a X-ray spectrometer were mainly used to determine plasma parameters of a SiO2 shell target. Si+131s-2p (Lyα) and Si+121s2-1s2p spectrum lines from the X-ray spectrometer were used to determine plasma parameters. The electron temperature and the electron density of a compressed micro-balloon target were estimated T~140 eV and ne~3.4×1022/cm3 respectively based on the Boltzmann plot and Stark broadening, Nomarski interferometer and VISAR were also used to investigate ablated plasma parameters and a velocity of a shockwave.
机译:仅提供摘要表格。自2015年8月起,KAERI的1 kJ Nd:玻璃激光器从四面体方向对称地照射了SiO2壳,以均匀压缩球形目标。安装了带有转向镜,聚焦透镜和监测仪器的球形目标腔,以产生高密度激光-等离子通过照射四个激光束。 X射线多针孔照相机和X射线光谱仪主要用于确定SiO 2壳靶的等离子体参数。使用X射线光谱仪的Si + 131s-2p(Lyα)和Si + 121s2-1s2p谱线确定等离子体参数。根据Boltzmann图和Stark展宽,分别估计压缩微气球靶的电子温度和电子密度为T〜140 eV和ne〜3.4×1022 / cm3,还使用Nomarski干涉仪和VISAR研究烧蚀的等离子体参数和冲击波的速度

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