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    Low-Energy Photoionization

    E. M. Henry*, C. L. Bates, and Wm. J. Veigele†

    • Kaman Sciences Corporation, Colorado Springs, Colorado 80907

    • *Permanent address: Air Force Technical Application Center, Patrick Air Force Base, Fla.
    • †Also at the University of Colorado, Colorado Springs, Colo. 80907.

    Phys. Rev. A 6, 2131 – Published 1 December, 1972

    DOI: https://doi.org/10.1103/PhysRevA.6.2131

    Abstract

    Low-energy-photoionization cross sections for the elements hydrogen through plutonium were calculated using a nonrelativistic single-particle model. Initial-atom and final-ion wave functions were developed from the Hartree-Fock equations using Slater's free-electron exchange approximation. Core relaxation was included approximately by using experimental binding energies in the Schrödinger equation for the continuum electron. Subshell contributions and total-cross-section calculations for the noble gases are compared with Hartree-Fock values with complete exchange. Total cross sections are compared with experiments for low-, medium-, and high-atomic-number elements.

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