J. Bozek et al., HIGH-RESOLUTION CARBON 1S PHOTOELECTRON-SPECTRUM OF ETHENE - AB-INITIO CALCULATION OF VIBRATIONAL STRUCTURE WITH DYNAMIC LOCALIZATION OF THE CORE-HOLE, Physical review. A, 57(1), 1998, pp. 157-161
The vibrational structure in the carbon 1s photoelectron spectrum of e
thene has been measured with a total experimental resolution of about
55 meV, significantly better than has been previously reported. The sp
ectrum has been calculated using ab initio electronic structure theory
with a localized core hole and the equivalent-cores approximation. Ag
reement between the calculated spectrum and measurements (taken 29 eV
above the carbon 1s threshold) is excellent. This agreement indicates
that there is dynamic localization of the core hale, even though the 1
sigma(g)-1 sigma(u) splitting is not small. The theoretical method pr
ovides an approach that is useful for analyzing such spectra and also
shows some of the pitfalls of attempting to fit complex vibrational sp
ectra without guidance from theory. [S1050-2947(98)00101-2].