English

Electron correlation effects in enhanced-ionization of molecules:A time-dependent generalized-active-space configuration-interaction study

Atomic Physics 2016-01-06 v1

Abstract

We numerically study models of H2\mathrm{H}_2 and LiH\mathrm{LiH} molecules, aligned collinearly with the linear polarization of the external field, to elucidate the possible role of correlation in the enhanced-ionization phenomena. Correlation is considered at different levels of approximation with the time-dependent generalized-active-space configuration-interaction method. The results of our studies show that enhanced ionization occurs in multielectron molecules, that correlation is important and they also demonstrate significant deviations between the results of the single-active-electron approximation and more accurate configuration-interaction methods. With the inclusion of correlation we show strong carrier-envelope-phase effects in the enhanced ionization of the asymmetric heteronuclear LiH\mathrm{LiH}-like molecule. The correlated calculation shows an intriguing feature of cross-over in enhanced ionization with two carrier-envelope-phases at critical inter-nuclear separation.

Keywords

Cite

@article{arxiv.1508.01629,
  title  = {Electron correlation effects in enhanced-ionization of molecules:A time-dependent generalized-active-space configuration-interaction study},
  author = {S. Chattopadhyay and S. Bauch and L. B. Madsen},
  journal= {arXiv preprint arXiv:1508.01629},
  year   = {2016}
}

Comments

11 pages, 11 figures

R2 v1 2026-06-22T10:28:26.541Z