Siegert-State Method for Strong Field Ionization of Molecules

  • L. Hamonou
  • T. Morishita
  • O. I. Tolstikhin
  • S. Watanabe
Conference paper
Part of the Springer Proceedings in Physics book series (SPPHY, volume 125)

Abstract

We propose to establish a numerical method to calculate the Siegert states of molecular solution of the stationary Schrödinger equation satisfying the regularity and outgoing-wave Siegert boundary conditions. This work follows the previous one on the atomic Siegert states in an electric field. The previous method enabled the calculation of complex energy eigenvalues and eigenfunctions for one-electron atomic potential. Here we extend the method to molecular cases. We describe necessary modifications for obtaining complex energy eigenvalues and eigenfunctions in more complex molecular cases. We give preliminary results obtained for the simplest molecular ion, \({\mathrm{H}}_{2}^{+}\).

Keywords

Intense Laser Field Discrete Variable Representation Quasi Energy Molecular Case Molecular Problem 
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Copyright information

© Springer-Verlag Berlin Heidelberg 2012

Authors and Affiliations

  • L. Hamonou
    • 1
  • T. Morishita
    • 1
  • O. I. Tolstikhin
    • 2
  • S. Watanabe
    • 1
  1. 1.Department of engineering ScienceUniversity of Electro-communicationsTokyoJapan
  2. 2.Russian Research Center “Kurchatov Institute”MoscowRussia

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