EPJ Web of Conferences (Jan 2015)

Advances in the MQDT approach of electron/molecular cation reactive collisions: High precision extensive calculations for applications

  • Motapon O.,
  • Niyonzima S.,
  • Chakrabarti K.,
  • Mezei J.Zs.,
  • Backodissa D.,
  • Ilie S.,
  • Epee M.D. Epee,
  • Peres B.,
  • Lanza M.,
  • Tchakoua T.,
  • Pop N.,
  • Argoubi F .,
  • Telmini M.,
  • Dulieu O.,
  • Bultel A.,
  • Robert J.,
  • Larson Å.,
  • Orel A.E.,
  • Schneider I.F.

DOI
https://doi.org/10.1051/epjconf/20158402003
Journal volume & issue
Vol. 84
p. 02003

Abstract

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Recent advances in the stepwise multichannel quantum defect theory approach of electron/molecular cation reactive collisions have been applied to perform computations of cross sections and rate coefficients for dissociative recombination and electron-impact ro-vibrational transitions of H2+, BeH+ and their deuterated isotopomers. At very low energy, rovibronic interactions play a significant role in the dynamics, whereas at high energy, the dissociative excitation strongly competes with all other reactive processes.