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Fournier, K.B.; Grasiani, F.R.; Harte, J.A.; Libby, S.B.; More, R.M.; Zimmerman, G.B.
Lawrence Livermore National Lab., CA (United States). Funding organisation: USDOE Office of Defense Programs (DP) (United States)1998
Lawrence Livermore National Lab., CA (United States). Funding organisation: USDOE Office of Defense Programs (DP) (United States)1998
AbstractAbstract
[en] My coauthors have done extensive theoretical and computational calculations that lay the ground work for a linear response matrix method to calculate non-LTE (local thermodynamic equilibrium) opacities. I will give briefly review some of their work and list references. Then I will describe what has been done to utilize this theory to create a computational package to rapidly calculate mild non-LTE emission and absorption opacities suitable for use in hydrodynamic calculations. The opacities are obtained by performing table look-ups on data that has been generated with a non-LTE package. This scheme is currently under development. We can see that it offers a significant computational speed advantage. It is suitable for mild non-LTE, quasi-steady conditions. And it offers a new insertion path for high-quality non-LTE data. Currently, the linear response matrix data file is created using XSN. These data files could be generated by more detailed and rigorous calculations without changing any part of the implementation in the hydro code. The scheme is running in Lasnex and is being tested and developed
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2 Nov 1998; 1276 Kilobytes; 40. Annual Meeting of the American Physical Society Division of Plasma Physics; New Orleans, LA (United States); 16-20 Nov 1998; DP--0102012; W-7405-ENG-48; Available from PURL: https://www.osti.gov/servlets/purl/2848-SFzC9C/native/
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