Ionization state and bound level populations in hot, dense plasmas

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Atomic Energy Levels, Atomic Recombination, Dense Plasmas, High Temperature Plasmas, Ionization, Laser Plasmas, Thomas-Fermi Model, Algorithms, Aluminum, Fermi-Dirac Statistics, Hartree Approximation, Iron, Iterative Solution

Scientific paper

The ionization state and bound level populations in hot, dense plasmas are studied in the average atom approximation. Bound level energies are fixed self-consistently with the complete set of population numbers, using preexistent Hartree-Fock calculations. A pressure-ionization scheme is presented that gradually merges bound electrons into the continuum. To solve the nonlinear algebraic system of equations of the model, an efficient iterative algorithm has been derived. Results are shown for aluminum and iron.

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