Abstract
There is no consensus on the magnitude and shape of the charge transfer cross section in low-energy H++H2 collisions, in spite of the fundamental importance of these collisions. Experiments have thus been carried out in the energy range 15≤E≤5000 eV. The measurements invalidate previous recommended data for E≤200 eV and confirm the existence of a local maximum around 45 eV, which was predicted theoretically. Additionally, vibrationally resolved cross sections allow us to investigate the evolution of the underlying charge transfer mechanism as a function of E. © 2013 American Physical Society.
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CITATION STYLE
Urbain, X., De Ruette, N., Andrianarijaona, V. M., Martin, M. F., Menchero, L. F., Errea, L. F., … Pons, B. (2013). New light shed on charge transfer in fundamental H++H 2 collisions. Physical Review Letters, 111(20). https://doi.org/10.1103/PhysRevLett.111.203201
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