The Journal of Chemical Physics · 1967 · 17 citations · 14 references
Localized Excited StateEngineeringNuclear PhysicsElectron Cloud EffectsElectronic Excited StateElectron PhysicElectron SpectroscopyElectron Impact ExcitationPhysicsEnergy RangeTrapped-electron MethodTrapped-electron PeaksAtomic PhysicsPhysical ChemistryHydrogenQuantum ChemistryExcited State PropertyNatural SciencesApplied PhysicsCondensed Matter PhysicsAc Rpd Technique
Electron impact excitation of H2 and D2 within 0.05 eV of threshold is studied with a trapped-electron method. An ac RPD technique is used to achieve energy resolution better than 0.1 eV. A series of trapped-electron peaks is resolved in the 11.7- to 13.5-eV range. These are identified as vibrational levels of the c 3Πu state. In this energy range, excitation of other states (both singlet and triplet) near threshold is found to be weak by comparison. Several peaks observed in the 13.8- to 15.4-eV range could not be assigned to excitation of vibrational levels of a single electronic state.
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<i>Electronic and Ionic Impact Phenomena</i>
H. S. W. Massey, E. H. S. Burhop, Philip Μ. Morse · Physics Today · 1953 · 1.3K citations
A Study of the Franck-Condon Principle
Albert Sprague Coolidge, Hubert M. James, R. D. Present · The Journal of Chemical Physics · 1936 · 208 citations
William Lichten · Physical Review · 1960 · 126 citations