DocumentCode
1319928
Title
X-Ray Backlighting of the Initial Stage of Single- and Multiwire
-Pinch
Author
Zhu, Xinlei ; Zou, Xiaobing ; Zhang, Ran ; Luo, Haiyun ; Zhao, Shen ; Wang, Xinxin
Author_Institution
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Volume
40
Issue
12
fYear
2012
Firstpage
3329
Lastpage
3333
Abstract
The initial stage of single- and multiwire Z-pinch was investigated by X-ray backlighting using an X-pinch as the soft X-ray source. The experiments were carried out on the pulsed power generator PPG-I (400 kA/500 kV/100 ns), which was designed and constructed by Tsinghua University. The source X -pinch and object single- or multiwire Z-pinch are installed in the place of a current-return rod or the center between the anode and the cathode, respectively. The X-ray films with high resolution and high sensitivity were used to record the results. A resistive current probe and a Rogowski coil were used to monitor the current, and a step wedge filter was designed to measure the mass ablation rate of the thin wire. By a large number of imaging experiments, the time sequence of images for the coronal plasma formation, the interwire plasma merging, and the development of plasma instabilities of Z-pinch, as well as some important quantitative parameters such as mass ablation ratio and core expansion ratio, were obtained.
Keywords
Z pinch; anodes; cathodes; plasma X-ray sources; plasma instability; Rogowski coil; X-ray backlighting; X-ray films; anode; cathode; core expansion ratio; coronal plasma formation; current 400 kA; current-return rod; image time sequence; initial stage; interwire plasma merging; mass ablation rate; mass ablation ratio; object multiwire Z-pinch; object single-wire Z-pinch; plasma instability development; pulsed power generator; resistive current probe; soft X-ray source; source X -pinch; step wedge filter; thin wire; time 100 ns; voltage 500 kV; Explosions; Generators; Image processing; Plasmas; Wires; X-ray imaging; $Z$ -pinch; Core expansion ratio; X-ray backlighting; mass ablation ratio;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2012.2218622
Filename
6332533
Link To Document