The Journal of Chemical Physics · 1982 · 107 citations · 32 references
EngineeringRotational ConstantsChemistryElectronic Excited StateSpectroscopic PropertySpectra-structure CorrelationElectron SpectroscopyPhotophysical PropertyMolecular SpectroscopyPhotoionization Cross SectionsPhysicsPhotochemistryAtomic PhysicsPhysical ChemistryQuantum ChemistryHydrogenIntensity DistributionExcited State PropertyPhotoelectron SpectroscopyNatural SciencesSpectroscopyApplied Physics
The 584 Å photoelectron spectra of n-H2, p-H2, HD, and D2 were recorded at a resolution of 11 meV FWHM using a supersonic molecular beam source. Spectra were taken at several stagnation temperatures and pressures in order to vary the rotational population distribution in the beam with a corresponding variation in the relative intensities of the rotational transitions. Many of the Q-branch components were resolved for the first time. ΔG(v+1/2) and Bv values were measured for all observed vibrational states of H+2, HD+, and D+2 and were used to determined the ionic vibrational and rotational constants: ωe, ωexe, ωeye, ωeze, Be, and αe. The results represent a substantial improvement over previous experimental determinations and were found to be consistent with the available theoretical rotation-vibration energy levels. The measurement of the intensity distribution of photoelectrons as a function of vibrational states yielded photoionization cross sections which were in good agreement with the theoretical values calculated by O′Niel and Reinhardt.
32
THE LYMAN BANDS OF MOLECULAR HYDROGEN
G. Herzberg, Lori Howe · Canadian Journal of Physics · 1959 · 316 citations