Dissociative recombination of HCO$^+$

ORAL

Abstract

The dissociative recombination (DR) mechanism of the important interstellar ion HCO+ at low electron energies is studied theoretically. Our work suggests that DR is driven through capture into Rydberg states, and that no direct mechanism operates at collision energies below a few eV. Our approach includes accurate quantum chemical calculations, the three-dimensional vibrational dynamics and a treatment of the joint electron-nuclear dynamics is treated using quantum defect theory and a frame transformation approach. Results are presented for the calculated autoionization widths of Rydberg states and the dissociative recombination cross sections, and compared with available experiments.

*This work is supported by NFS

Authors

  • Stefano Tonzani

    • University of Colorado Boulder
  • Aasa Larson

    • KTH, Stockholm, Sweden
  • Viatcheslav Kokoouline

    • University of Central Florida, Orlando
  • Ivan Mikhaylov

    • University of Central Florida
  • Robin Santra

    • ITAMP, Harvard
  • Chris H. Greene

    • University of Colorado Boulder