English

Two-center dielectronic recombination in slow atomic collisions

Atomic Physics 2019-07-17 v1

Abstract

A free electron can form a bound state with an atomic center AA upon photo emission (radiative recombination). In the presence of a neighboring atom BB, such a bound state can, under certain conditions, be also formed via resonant transfer of energy to BB, with its subsequent relaxation through radiative decay (two-center dielectronic recombination). This two-center process is very efficient in the 'static' case where AA and BB form a weakly bound system, dominating over single-center radiative recombination up to internuclear distances as large as several nanometers. Here we study its dynamic variant in which recombination occurs when a beam of species AA collides with a gas of atoms BB and show that, even though the average distance between AA and BB in collisions is orders of magnitude larger than the typical size of a bound system, the two-center recombination can still outperform the single-center radiative recombination.

Keywords

Cite

@article{arxiv.1905.02105,
  title  = {Two-center dielectronic recombination in slow atomic collisions},
  author = {A. Jacob and C. Müller and A. B. Voitkiv},
  journal= {arXiv preprint arXiv:1905.02105},
  year   = {2019}
}

Comments

8 pages, 2 figures