English

Dissociative recombination and rotational transitions of D$_2^+$ in collisions with slow electrons

Atomic Physics 2022-03-30 v1 Instrumentation and Methods for Astrophysics

Abstract

Rate coefficients for dissociative recombination and state-to-state rotational transitions of the D2+_{2}^{+} ion induced by collisions with very low-energy electrons have been reported following our previous studies on HD+^{+} and H2+_{2}^{+} [9,10]. The same molecular structure data sets, excitations (Ni+N_{i}^{+} \rightarrow Nf+=Ni++2N_{f}^{+}=N_{i}^{+}+2 for Ni+=0N_{i}^{+}=0 to 1010) and de-excitations (Ni+N_{i}^{+} \rightarrow Nf+=Ni+2N_{f}^{+}=N_{i}^{+}-2, for Ni+=2N_{i}^{+}=2 to 1010) were used for collision energies ranging from 0.010.01 meV to 0.30.3 eV. Isotopic effects for dissociative recombination and rotational transitions of the vibrationally relaxed targets are presented.

Keywords

Cite

@article{arxiv.2202.09143,
  title  = {Dissociative recombination and rotational transitions of D$_2^+$ in collisions with slow electrons},
  author = {M. D. Epée Epée and O. Motapon and N. Pop and F. Iacob and E. Roueff and I. F. Schneider and J. Zs Mezei},
  journal= {arXiv preprint arXiv:2202.09143},
  year   = {2022}
}

Comments

7 pages, 7 figures, 4 tables