English

Temperature dependence of binary and ternary recombination of H3+ ions with electron

Plasma Physics 2015-05-13 v1 Atomic Physics

Abstract

We study binary and the recently discovered process of ternary He-assisted recombination of H3+ ions with electrons in a low temperature afterglow plasma. The experiments are carried out over a broad range of pressures and temperatures of an afterglow plasma in a helium buffer gas. Binary and He-assisted ternary recombination are observed and the corresponding recombination rate coefficients are extracted for temperatures from 77 K to 330 K. We describe the observed ternary recombination as a two-step mechanism: First, a rotationally-excited long-lived neutral molecule H3* is formed in electron-H3+ collisions. Second, the H3* molecule collides with a helium atom that leads to the formation of a very long-lived Rydberg state with high orbital momentum. We present calculations of the lifetimes of H3* and of the ternary recombination rate coefficients for para and ortho-H3+. The calculations show a large difference between the ternary recombination rate coefficients of ortho- and para-H3+ at temperatures below 300 K. The measured binary and ternary rate coefficients are in reasonable agreement with the calculated values.

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Cite

@article{arxiv.0903.1656,
  title  = {Temperature dependence of binary and ternary recombination of H3+ ions with electron},
  author = {J. Glosik and R. Plasil and I. Korolov and T. Kotrik and O. Novotny and P. Hlavenka and P. Dohnal and J. Varju and V. Kokoouline and C. H. Greene},
  journal= {arXiv preprint arXiv:0903.1656},
  year   = {2015}
}

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15 pages