English

Calculated cross sections for low energy electron collision with OH

Atomic Physics 2019-09-04 v1 Chemical Physics

Abstract

The hydroxyl radical, OH, is an important component of many natural and technological plasmas but there is little available information on processes involving its collisions with low-energy electrons. Low-energy electron collisions with OH are studied in the framework of the R-matrix method. Potential energy curves of some of the low lying target states of doublet and quartet symmetry which go to the O(3P)+H(2S), O(1D)+H(2S) and O(1S)+H(2S) asymptotic limits are obtained for inter nuclear separations between 1 - 6 a0. Scattering calculations are performed at the OH equilibrium geometry Re = 1:8342 a0 to yield cross sections for elastic scattering, electronic excitations form the X2\Pi ground state to the three excited states of A2Sigma+, a 4Sigma, 1 2Sigma symmetry and for electron impact dissociation of OH. The positions and widths for negative ion resonances in the e{OH system are used estimate the cross section for dissociative electron attachment to OH which is found to be significant at electron energies about 1.5 eV.

Keywords

Cite

@article{arxiv.1907.08701,
  title  = {Calculated cross sections for low energy electron collision with OH},
  author = {Kalyan Chakrabarti and Vincenzo Laporta and Jonathan Tennyson},
  journal= {arXiv preprint arXiv:1907.08701},
  year   = {2019}
}

Comments

15 pages

R2 v1 2026-06-23T10:25:41.631Z