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Advanced spectroscopic analysis of 0.8-1.0-MA Mo x pinches and the influence of plasma electron beams on L-shell spectra of Mo ions

Authors :
A S, Shlyaptseva
S B, Hansen
V L, Kantsyrev
D A, Fedin
N, Ouart
K B, Fournier
U I, Safronova
Source :
Physical review. E, Statistical, nonlinear, and soft matter physics. 67(2 Pt 2)
Publication Year :
2002

Abstract

This paper presents a detailed investigation of the temporal, spatial, and spectroscopic properties of L-shell radiation from 0.8 to 1.0 MA Mo x pinches. Time-resolved measurements of x-ray radiation and both time-gated and time-integrated spectra and pinhole images are presented and analyzed. High-current x pinches are found to have complex spatial and temporal structures. A collisional-radiative kinetic model has been developed and used to interpret L-shell Mo spectra. The model includes the ground state of every ionization stage of Mo and detailed structure for the O-, F-, Ne-, Na-, and Mg-like ionization stages. Hot electron beams generated by current-carrying electrons in the x pinch are modeled by a non-Maxwellian electron distribution function and have significant influence on L-shell spectra. The results of 20 Mo x-pinch shots with wire diameters from 24 to 62 microm have been modeled. Overall, the modeled spectra fit the experimental spectra well and indicate for time-integrated spectra electron densities between 2 x 10(21) and 2 x 10(22) cm(-3), electron temperatures between 700 and 850 eV, and hot electron fractions between 3% and 7%. Time-gated spectra exhibit wide variations in temperature and density of plasma hot spots during the same discharge.

Details

ISSN :
15393755
Volume :
67
Issue :
2 Pt 2
Database :
OpenAIRE
Journal :
Physical review. E, Statistical, nonlinear, and soft matter physics
Accession number :
edsair.pmid..........5a79c7b3dad69e99fab2d6b0298553bb