DocumentCode :
1433957
Title :
Time-Integrated Synthetic X-Ray Spectroscopy for Stainless Steel Wire Array Z -Pinches
Author :
Dasgupta, Arati ; Giuliani, John L. ; Davis, Jack ; Clark, Robert W. ; Coverdale, Christine A. ; Jones, Brent ; Ampleford, David J.
Author_Institution :
Plasma Phys. Div., Naval Res. Lab., Washington, DC, USA
Volume :
38
Issue :
4
fYear :
2010
fDate :
4/1/2010 12:00:00 AM
Firstpage :
598
Lastpage :
605
Abstract :
We have used a collisional-radiative spectroscopic model to generate a stainless steel (SS) atomic model to analyze the implosion dynamics of an array of SS wires on the Z and/or refurbished Z accelerator at the U.S. Sandia National Laboratories. This approach combines the completeness of highly averaged Rydberg state models with the accuracy of detailed models for all important excited states. Our atomic model includes a very large number of levels and atomic structure data, as well as excitation, ionization, and recombination level coupling. We have investigated the ionization dynamics and generated K- and L-shell spectra using the conditions in the Z accelerator, as calculated by a 1-D nonlocal thermodynamic equilibrium (LTE) radiation hydrodynamics model. This investigation using more detailed and accurate atomic models supersedes earlier spectroscopic simulation of K-shell SS spectra to analyze spectra on the Z accelerator. The non-LTE populations are obtained by generating the detailed atomic data for Fe, Ni, and Cr, and Mn ions, the constituents of SS. Analysis of our spectra using self-consistently generated data from the flexible atomic code shows excellent agreement with experimental data of shots Z581 and Z1860. We have also included level-specific dielectronic recombination from H- to He-like ions and inner-shell excitation rates from excited states of He-like ions in our atomic model and investigated the Ly?? satellite lines that are useful for diagnosing Doppler broadening in a Z-pinch plasma at stagnation.
Keywords :
Z pinch; exploding wires; plasma collision processes; plasma diagnostics; stainless steel; 1D nonlocal thermodynamic equilibrium radiation hydrodynamics model; Doppler broadening diagnosis; FeCCrJk; K-shell spectra; L-shell spectra; US Sandia National Laboratories; Z-pinch plasma stagnation; averaged Rydberg state models; collisional-radiative spectroscopic model; excitation; excited states; flexible atomic code; implosion dynamics; inner-shell excitation rates; ionization dynamics; level-specific dielectronic recombination; recombination level coupling; refurbished Z accelerator; self-consistently generated data; stainless steel atomic model; stainless steel wire array Z-pinches; time-integrated synthetic X-ray spectroscopy; $Z$-pinch; Dielectronic recombination (DR); X-ray spectra; plasma diagnostics;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2010.2040841
Filename :
5427009
Link To Document :
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