Collection Of theses on high power laser and plasma physics, 2014, 12 (1): 1, Published Online: Jun. 2, 2017  

Multispectral X-ray imaging with a multichannel Kirkpatrick-Baez microscope for imploded core temperature observation

Author Affiliations
1 Shanghai Institute of Laser Plasma, 1129 Chenjiashan Road, Shanghai 201899, P.R. China
2 Key Laboratory of Advanced Micro-structured Materials, Tongji University, Shanghai 200092, P.R. China
Abstract
The coupling efficiency of short-pulse ignition laser energy to hot-spot internal energy directly affects the feasibility of fast ignition. Experimental characterization of the hot spot has attracted much attention. Among temperature, density and neutron yield of fast ignition experiments, the temperature of the hot spot has few available diagnostic methods. Multispectral X-ray imaging of hot-spot continuum emission is expected to give the time evolution of the electron temperature distribution. This article describes electron temperature determination from multispectral imaging, a dual-channel X-ray Kirkpatrick-Baez (KB) microscope designed for two-spectral imaging, and the experimental results of hot-core multispectral imaging of an imploded cone-shell target at the SG-II laser facility.

Wei Wang, Zhi-Heng Fang, Guo Jia, Sheng-Zhen Yi, Yu-Chun Tu, Jing-Tao Zhu, Bao-Zhong Mu, Hong-Hai An, Rui-Rong Wang, Zhi-Yong Xie, Jun-Jian Ye, Xiang-Fu Meng, Hua-Zhen Zhou, Chen Wang, An-Le Lei, Zhan-Shan Wang, Si-Zu Fu. Multispectral X-ray imaging with a multichannel Kirkpatrick-Baez microscope for imploded core temperature observation[J]. Collection Of theses on high power laser and plasma physics, 2014, 12(1): 1.

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