A fast method to generate collisional excitation cross-sections of highly charged ions in a hot dense matter |
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Authors: | H.-K. Chung R.W. Lee M.H. Chen |
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Affiliation: | aLawrence Livermore National Laboratory, L-399, PO Box 808, Livermore, CA 94551, United States |
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Abstract: | A method to compute collisional excitation cross-sections in jj-averaged configuration sets is presented in the framework of plane-wave Born approximation using Dirac–Hartree–Slater wave functions with appropriate low-energy corrections. When averaged into the ls configuration or hydrogenic superconfiguration sets, the results are found to compare with distorted wave calculations well within 30% on average. The cross-sections are averaged into hydrogenic cross-sections and fitted using the Gaunt factor formalism. We present analytic fit coefficients of Gaunt factors for 12 atoms of Z between 5 and 79 for hydrogenic transitions. |
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Keywords: | Collisional excitation cross-sections Inelastic cross-sections Gaunt factors Plane-wave Born approximation Non-LTE kinetics Plasma spectroscopy Collisional-radiative modeling Hydrogenic model |
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