User account menu

  • Log in
Home
Theoretical Spectroscopy Group

Main navigation

  • Home
  • People
    • Andrea Cucca
    • Christine Giorgetti
    • Francesco Sottile
    • Lucia Reining
    • Matteo Gatti
    • Valerie Veniard
    • Vitaly Gorelov
      • Fatema Mohamed
      • Kevin Leveque-Simon
      • Felana Andriambelaza
      • Maram Ali Ahmed Musa
      • Sarbajit Dutta
      • Marc Aichner
      • Carlos Rodriguez Perez
      • Jean Goossaert
      • Niklas Penner
    • Former Members
  • How to Reach Us
  • Research
    • Strong Correlation
    • Plasmons and EELS
    • Developments in TDDFT
    • Excitons and Exciton Dispersion
    • Larger Public
    • Low dimensional materials
    • Non-linear Optics
    • Scientific goals and main achievements
    • Theory Developments
    • Software
    • Publications
    • Thesis
  • Training
  • ETSF Events

Double ionization of excited helium states by an intense laser field: spin and dressing effects

Breadcrumb

  • Home
  • Double ionization of excited helium states by an intense laser field: spin and dressing effects
Author
Valérie Véniard
Richard Taïeb
Alfred Maquet
Keywords
non-Palaiseau
paper
Abstract

We present numerical simulations for a model one-dimensional two-electron atom subjected to an intense laser pulse. Double ionization probabilities are presented when the atom is initially in an excited state and depend strongly on the spin state of the system. In view of the recollision picture, we show that they are strongly correlated with the electron-impact ionization probabilities. Furthermore, we show that the dressing by the laser of the remaining ion has to be taken into account to quantitatively describe the two-electron ejection in the low intensity range.

Year of Publication
2003
Journal
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS
Volume
36
Number of Pages
4145-4154
Date Published
OCT 28
ISSN Number
0953-4075
Download citation
  • Google Scholar
  • BibTeX
  • RIS

Developed & Designed by Alaa Haddad. Customized by ETSF Palaiseau © 2025.