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    Impact of super-Gaussian electron distributions on plasma K-shell emission

    H. P. Le*, E. V. Marley, and H. A. Scott

    • *Contact author: hle@llnl.gov

    Phys. Rev. E 112, 025202 – Published 1 August, 2025

    DOI: https://doi.org/10.1103/f5x3-j834

    Abstract

    Electron distributions in laser-produced plasmas will be driven toward a super-Gaussian distribution due to inverse bremsstrahlung absorption [Langdon, Phys. Rev. Lett. 44, 575 (1980)]. Both theoretical and experimental evidence suggest that fundamental plasma properties are altered by the super-Gaussian distribution. This paper examines how the super-Gaussian distribution affects the ionization balance and K-shell emission of atomic plasmas, utilizing approximate formulas and detailed collisional-radiative simulations. While the impact on plasma ionization is small, K-shell spectra can be significantly modified. Based on these findings, we demonstrate that K-shell spectroscopy can be used to infer super-Gaussian or other similar nonequilibrium electron distributions.

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