Atomic photoionization in a changing plasma environment

T. N. Chang and T. K. Fang
Phys. Rev. A 88, 023406 – Published 5 August 2013; Erratum Phys. Rev. A 91, 069902 (2015)

Abstract

We present a detailed theoretical study on the photoionization of one- and two-electron atoms subject to an external changing plasma environment based on the Debye-Hückel model. Specifically, by examining the migration of the bound excited states into the continuum in the presence of plasma, our investigation has led to resonancelike photoionization structures immediately above the ionization thresholds for H, H, and He atoms. For He, unlike the usual Fano-Beutler resonances due to the configuration mixing between the doubly excited components and the single ionization channel with different 12 angular momenta combinations in the final-state wave function, these plasma-induced resonancelike structures result from the mixing of the quasibound and continuum components of the same 12 combination in the final-state function. With a number of specific examples, we show that the general features of these spectra could be linked directly to the overlap at small r between the effective wave functions of the outgoing ionized electron and the atomic electron in its initial states.

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  • Received 27 April 2013

DOI:https://doi.org/10.1103/PhysRevA.88.023406

©2013 American Physical Society

Erratum

Authors & Affiliations

T. N. Chang1 and T. K. Fang2,*

  • 1Department of Physics and Astronomy, University of Southern California, Los Angeles, California 90089-0484, USA
  • 2Department of Physics, Fu Jen Catholic University, Taipei, Taiwan 242, Republic of China

  • *051420@mail.fju.edu.tw

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Vol. 88, Iss. 2 — August 2013

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