High Power Laser and Particle Beams, Volume. 34, Issue 12, 122001(2022)
Source-coded radiography technique with high spatial-resolution for X-ray source driven by ps-laser
To measure the areal density distribution of cold fuel at the maximum compression time during the stagnation phase of implosion in inertial confinement fusion (ICF), we have established the ps-laser driven high-energy X-ray radiography using source-coded technique. This paper describes the design and employment of the object including character-object and pinhole array. Based on the object, the source distribution and the object radiography was obtained at the same shot and same angle of view, and therefore the source-coded radiography of ps-laser driven X-ray has been established in experiments for the first time. From the experimental work on Xingguang-III facility, the spatial resolution of the inversion image with W wire-array target is 5.4 μm±0.7 μm. The efficiency of converting laser energy to high-energy bremsstrahlung (50-200 keV) is 5.4×10-4 in W wire-array target and 4.8×10-4 in Au single-wire target, respectively. It is possible that the the source-coded radiography of ps-laser driven X-ray in this work could account for overcoming the balance between spatial resolution and brightness in traditional X-ray backlight by ps-laser. The source-coded radiography provides an important method for ICF implosion backlight to get high resolution high signal-to-noise ratio images under the strong background.
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Tiankui Zhang, Lianqiang Shan, Minghai Yu, Feng Lu, Weimin Zhou, Chao Tian, Fang Tan, Yonghong Yan, Feng Zhang, Zongqiang Yuan, Qiuyue Xu, Weiwu Wang, Zhigang Deng, Jian Teng, Dongxiao Liu, Lei Yang, Wei Fan, Yue Yang, Kainan Zhou, Jingqin Su, Yuchi Wu, Yongkun Ding, Yuqiu Gu. Source-coded radiography technique with high spatial-resolution for X-ray source driven by ps-laser[J]. High Power Laser and Particle Beams, 2022, 34(12): 122001
Category: Inertial Confinement Fusion Physics and Technology
Received: Jun. 6, 2022
Accepted: --
Published Online: Nov. 10, 2022
The Author Email: Zhou Weimin (zhouweimin@gmail.com), Gu Yuqiu (yqgu@caep.ac.cn)