Quantum-mechanical calculations of rotational-excitation cross sections for HCl, DCl, DF, and HF in slow collisions with He

L. A. Collins and N. F. Lane
Phys. Rev. A 14, 1358 – Published 1 October 1976
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Abstract

Low-energy rotational-excitation cross sections have been calculated for collisions between ground-state helium atoms and the diatomic molecules HCl, DCl, DF, and HF from model-potential surfaces. Solutions of the coupled radial equations are obtained in the close-coupling coupled-channels (CC) formulation and the jz conserving coupled-states (CS) approximation, including as many channels (open and closed) as needed for convergence. Trends in the behavior of the cross sections with respect to variations in the potential surface and the spacing of rotational levels are discussed with particular emphasis on the isotope effects. In addition, cross sections calculated for various CS approximations are compared with CC results and comment is made on the influence of the closed channels.

  • Received 29 October 1975

DOI:https://doi.org/10.1103/PhysRevA.14.1358

©1976 American Physical Society

Authors & Affiliations

L. A. Collins* and N. F. Lane

  • Physics Department, Rice University, Houston, Texas 77001

  • *Present address: Joint Institute for Laboratory Astrophysics (JILA) University of Colorado, Boulder, Colorado 80309.
  • Visiting Fellow, JILA, 1975-1976, on leave from Rice University.

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Vol. 14, Iss. 4 — October 1976

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