Radiative properties of argon gas puff z-pinch implosions on COBRA

Spatially resolved and time-integrated x-ray spectroscopy, combined with modeling of the spectra with detailed radiation kinetics and transport, is a powerful method to study the conditions in a hot moving plasma. K-shell argon spectra were measured from gas puff implosions with different center jet...

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Veröffentlicht in:Physics of plasmas 2016-10, Vol.23 (10)
Hauptverfasser: Ouart, N. D., de Grouchy, P. W. L., Qi, N., Giuliani, J. L., Dasgupta, A., Shelkovenko, T. A., Pikuz, S. A., Hammer, D. A., Kusse, B. R., Apruzese, J. P., Clark, R. W.
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Sprache:eng
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Zusammenfassung:Spatially resolved and time-integrated x-ray spectroscopy, combined with modeling of the spectra with detailed radiation kinetics and transport, is a powerful method to study the conditions in a hot moving plasma. K-shell argon spectra were measured from gas puff implosions with different center jet masses on the 1 MA COBRA generator at Cornell University. The outer to inner plenum pressures (1 and 3 psia, respectively) were the same for all shots producing an outer to inner mass ratio of 1:1. This paper uses non-local thermodynamic equilibrium kinetic modeling to infer the ion density, electron temperature, K-shell radiating mass, and K-shell powers from stagnating argon gas puff z-pinch implosion. We find that the implosions with a center jet produced bright spot regions of plasma with higher temperature and density than those without a jet.
ISSN:1070-664X
1089-7674
DOI:10.1063/1.4965244