DocumentCode :
1326409
Title :
Producing Kiloelectronvolt L-Shell Plasmas on Zebra at UNR
Author :
Safronova, Alla S. ; Kantsyrev, Victor L. ; Esaulov, Andrey A. ; Shrestha, Ishor ; Shlyaptseva, Veronica V. ; Weller, Michael E. ; Ouart, Nicholas D. ; Osborne, Glenn C. ; Stafford, Austin ; Keim, Steven F. ; Velikovich, Alexander L. ; Giuliani, John L.,
Author_Institution :
Univ. of Nevada, Reno, NV, USA
Volume :
40
Issue :
12
fYear :
2012
Firstpage :
3347
Lastpage :
3353
Abstract :
Experiments with various wire loads from mid-atomic-number wires, which were performed on the university-scale 1-MA Zebra generator at the University of Nevada, Reno, during the last few years, are analyzed to assess the highest electron temperature reached. In particular, the results from experiments with planar wire arrays (PWAs) were considered. Load materials from mid-atomic-number such as stainless steel, Alumel, Cu, brass, Mo, and up to Ag were used to generate L-shell plasmas and to study plasma parameters. Though the full diagnostic set was utilized, the main focus was on X-ray spectroscopic data and on the non-local thermodynamic equilibrium kinetic modeling. As a result, the scaling of the maximum Te with the load material atomic number is presented for the first time in the range from Fe to Ag for L-shell plasmas from PWAs. The highest values of the electron temperature in L-shell plasmas, which are estimated from the modeling, were from both Ag PWAs and X-pinches. This work is important for the development of efficient X-ray radiators on university-scale Z-pinch generators.
Keywords :
pinch effect; plasma X-ray sources; plasma devices; plasma diagnostics; plasma temperature; plasma thermodynamics; Reno; UNR; University of Nevada; X-pinches; X-ray radiators; X-ray spectroscopic data; Zebra generator; alumel; current 1 MA; electron temperature; full diagnostic set; kiloelectronvolt L-shell plasmas; load material atomic number; mid-atomic-number wires; nonlocal thermodynamic equilibrium kinetic model; planar wire arrays; plasma parameters; stainless steel; university-scale Z-pinch generators; wire loads; Generators; Ions; Kinetic energy; Plasma temperature; Plasmas; Wires; $X$-pinch; Kiloelectronvolt plasmas; X-ray spectra; kinetic modeling; wire array;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2012.2222451
Filename :
6338343
Link To Document :
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