One-electron capture processes in Ne2+-H2collisions
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Atomic and Molecular Physics, and Optics
Link
http://stacks.iop.org/0953-4075/22/i=21/a=010/pdf
Reference19 articles.
1. Isotope Effects on Vibrational Transition Probabilities. II. Electronic Transitions of Isotopic Nitrogen, Nitric Oxide, and Oxygen Molecules
2. Isotope Effects on Vibrational Transition Probabilities. III. Ionization of Isotopic H2, N2, O2, NO, CO, and HCl Molecules
3. On the importance of metastable Ne2+(1D2) ions in charge-changing Ne2+-Xe collisions
4. Vibrational excitation of H2+in electron capture collisions of Xe2+and Ar3+with H2
5. Rotational excitation of H2molecules by Li+impact in the energy range from 50-400 eV
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1. Luminescence measurements of hyperthermal Xe2++ O2and O++ Xe collision systems;Physical Chemistry Chemical Physics;2020
2. Semiclassical Approach to Charge-Transfer Processes in Ion-Molecule Collisions;Advances in Chemical Physics;2007-03-14
3. The Bond-Forming Reactions of Atomic Dications with Neutral Molecules: Formation of ArNH+ and ArN+ from Collisions of Ar2+ with NH3;Journal of the American Chemical Society;2004-03-01
4. Double charge transfer spectroscopy of NO2+ at vibrational resolution: application of Franck–Condon analyses to a dicationic system;Chemical Physics;2003-12
5. Studies of Doubly Charged Molecular Ions Using High-Resolution Double Charge Transfer Spectrometer.;Journal of the Mass Spectrometry Society of Japan;2002
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