Theoretical Study of the Two-Dimensional Momentum Spectra of H- Ion in the Intense Laser Fields

Authors

  • Chang-Ping Sun School of Science and Institute of Condensed Matter Physics, Linyi University, Linyi 276000, China
  • Bao-Feng Cui Experimental Management Center, Linyi University, Linyi 276000, China

DOI:

https://doi.org/10.4208/jams.090913.121413a

Keywords:

strong field approximation method, time-dependent Schrödinger equation, momentum spectra.

Abstract

By using two model potentials chosen, the second outermost back rescattered ridges (BRR) of the two-dimensional (2D) momentum spectra of $H^-$ ion in the linear polarization laser fields are studied under the strong-field approximation (SFA). The results show that the polarization potentials in the two model potentials have little effect on the 2D momentum spectra, the number of BRR increases and the fluctuation of angular distributions along the second BRR decreases with the increase of the laser intensity, but the accurate electron-atom elastic scattering cross sections can be retrieved directly along the second outermost BRR by the polynomial fitting method.

Published

2014-05-01

Issue

Section

Articles