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Calibration and analysis of spatially resolved x-ray absorption spectra from a nonuniform plasma
Authors:P F Knapp  S B Hansen  S A Pikuz  T A Shelkovenko  D A Hammer
Affiliation:Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.
Abstract:
We report here the calibration and analysis techniques used to obtain spatially resolved density and temperature measurements of a pair of imploding aluminum wires from x-ray absorption spectra. A step wedge is used to measure backlighter fluence at the film, allowing transmission through the sample to be measured with an accuracy of ±14% or better. A genetic algorithm is used to search the allowed plasma parameter space and fit synthetic spectra with 20?μm spatial resolution to the measured spectra, taking into account that the object plasma nonuniformity must be physically reasonable. The inferred plasma conditions must be allowed to vary along the absorption path in order to obtain a fit to the spectral data. The temperature is estimated to be accurate to within ±25% and the density to within a factor of two. This information is used to construct two-dimensional maps of the density and temperature of the object plasma.
Keywords:
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