
doi: 10.1063/1.39212
The applicability of translation energy spectroscopy as a tool to determine individual reaction cross sections in atomic collisions is analyzed with special emphasis on the electron capture process in highly charged ion collisions. A condition is derived to separate between higher collision energies where translation energy spectroscopy is problem free and lower energies where strong overlap of individual spectra features prohibits an analysis of the total translation energy spectrum by means of a simple deconvolution procedure.
Ions, Fluids, Atom Collisions, Ion Collisions, Capture, Elements, Ion-Atom Collisions, Helium, Rare Gases, Scattering, Nonmetals, Molecular & Chemical Physics-- Collision Phenomena, Charged Particles, Cross Sections, Spectra 640304* -- Atomic, Energy Spectra, Collisions, Electron Capture, Gases, 74 Atomic And Molecular Physics, Argon Ions
Ions, Fluids, Atom Collisions, Ion Collisions, Capture, Elements, Ion-Atom Collisions, Helium, Rare Gases, Scattering, Nonmetals, Molecular & Chemical Physics-- Collision Phenomena, Charged Particles, Cross Sections, Spectra 640304* -- Atomic, Energy Spectra, Collisions, Electron Capture, Gases, 74 Atomic And Molecular Physics, Argon Ions
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