State-selective electron transfer in He++He collisions at intermediate energies

J. W. Gao, Y. Wu, J. G. Wang, N. Sisourat, and A. Dubois
Phys. Rev. A 97, 052709 – Published 21 May 2018

Abstract

Electron transfer processes in He++He collisions are studied theoretically using a three-electron semiclassical atomic-orbital close-coupling method in a wide energy domain, from 1 to 225 keV/u. Total, state-selective, and angular-differential cross sections are presented and compared with available experimental and theoretical results. A prominent oscillatory energy dependence structure in the transfer-excitation cross sections is observed and explained by a strong competition between these channels and the projectile-excitation processes. Moreover, the angular-differential cross sections considered in this work exhibit an oscillatory structure which is interpreted within a Fraunhofer-type diffraction model. For the two highest considered collision energies, the cross sections show a different pattern for which both Fraunhofer-type diffraction and the Thomas mechanism have to be advocated.

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  • Received 20 February 2018

DOI:https://doi.org/10.1103/PhysRevA.97.052709

©2018 American Physical Society

Physics Subject Headings (PhySH)

Atomic, Molecular & Optical

Authors & Affiliations

J. W. Gao1,2,*, Y. Wu1,3, J. G. Wang1, N. Sisourat2, and A. Dubois2

  • 1Institute of Applied Physics and Computational Mathematics, 100088 Beijing, China
  • 2Sorbonne Université, CNRS, Laboratoire de Chimie Physique-Matière et Rayonnement, F-75005 Paris, France
  • 3HEDPS, Center for Applied Physics and Technology, Peking University, 100084 Beijing, China

  • *junwen.gao@etu.upmc.fr

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Issue

Vol. 97, Iss. 5 — May 2018

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