English

Dissociative recombination of CH$^+$ molecular ion induced by very low energy electrons

Instrumentation and Methods for Astrophysics 2022-03-08 v1 Atomic Physics Plasma Physics

Abstract

We used the multichannel quantum defect theory to compute cross sections and rate coefficients for the dissociative recombination of CH+^+ initially in its lowest vibrational level vi+=0v_i^+ = 0 with electrons of incident energy bellow 0.20.2 eV. We have focused on the contribution of the 22 2Π^2\Pi state which is the main dissociative recombination route at low collision energies. The final cross section is obtained by averaging the relevant initial rotational states (Ni+=0,,10)(N_i^+ = 0,\dots,10) with a 300300 K Boltzmann distribution.The Maxwell isotropic rate coefficients for dissociative recombination are also calculated for different initial rotational states and for electronic temperatures up to a few hundred Kelvins. Our results are compared to storage-ring measurements.

Keywords

Cite

@article{arxiv.2203.03484,
  title  = {Dissociative recombination of CH$^+$ molecular ion induced by very low energy electrons},
  author = {J. Zs. Mezei and M. D. Epée Epée and O. Motapon and I. F. Schneider},
  journal= {arXiv preprint arXiv:2203.03484},
  year   = {2022}
}

Comments

5 pages, 5 figures