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用于快速点火实验中惯性聚变能源燃料面密度测量的单色X射线成像技术。

Monochromatic x-ray radiography for areal-density measurement of inertial fusion energy fuel in fast ignition experiment.

作者信息

Fujioka Shinsuke, Fujiwara Takashi, Tanabe Minoru, Nishimura Hiroaki, Nagatomo Hideo, Ohira Shinji, Inubushi Yuichi, Shiraga Hiroyuki, Azechi Hiroshi

机构信息

Institute of Laser Engineering, Osaka University, 2-6 Yamada-oka, Suita Osaka, 565-0871, Japan.

出版信息

Rev Sci Instrum. 2010 Oct;81(10):10E529. doi: 10.1063/1.3494383.

Abstract

Ultrafast, two-dimensional x-ray imaging is an important diagnostics for the inertial fusion energy research, especially in investigating implosion dynamics at the final stage of the fuel compression. Although x-ray radiography was applied to observing the implosion dynamics, intense x-rays emitted from the high temperature and dense fuel core itself are often superimposed on the radiograph. This problem can be solved by coupling the x-ray radiography with monochromatic x-ray imaging technique. In the experiment, 2.8 or 5.2 keV backlight x-rays emitted from laser-irradiated polyvinyl chloride or vanadium foils were selectively imaged by spherically bent quartz crystals with discriminating the out-of-band emission from the fuel core. This x-ray radiography system achieved 24 μm and 100 ps of spatial and temporal resolutions, respectively.

摘要

超快二维X射线成像对于惯性聚变能源研究是一项重要的诊断技术,特别是在研究燃料压缩最后阶段的内爆动力学方面。尽管X射线照相术已被用于观察内爆动力学,但高温高密度燃料芯本身发出的强烈X射线常常叠加在射线照片上。通过将X射线照相术与单色X射线成像技术相结合可以解决这个问题。在实验中,通过球形弯曲石英晶体对激光辐照聚氯乙烯或钒箔发射的2.8 keV或5.2 keV背光源X射线进行选择性成像,同时区分来自燃料芯的带外发射。该X射线照相系统分别实现了24μm的空间分辨率和100 ps的时间分辨率。

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