Iterative static-exchange techniques applied to low-energy collisions of electrons with molecular ions: H2/+/, CH/+/, and N2/+/

Physics – General Physics

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Electron Scattering, Hydrocarbons, Hydrogen Ions, Iterative Solution, Molecular Ions, Nitrogen Ions, Approximation, Elastic Scattering, Ionic Collisions, Photoionization, Vibrational Spectra, Wave Functions

Scientific paper

An iterative static-exchange single-center close-coupling procedure is applied to electron collisions with molecular ions. The method is taken mutatus mutandus from a procedure used previously to study electron neutral-molecule collisions. The procedure is found to be both stable and efficient for calculating static-exchange level wave functions and eigenphases. The method is applied to electron collisions with H2(+), CH(+), and N2(+). In addition, ro-vibrational-excitation cross sections for e + H2(+) collisions in the adiabatic nuclei approximation and photoionization cross sections for H2 and N2 are reported.

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