Abstract

Molecular-frame photoelectron angular distributions (MFPADs) for CF 4 in the fluorine K-shell ionization region have been measured at three photon energies 705, 725 and 775 eV. The molecular axis was defined by the momenta of the F + – CF 3 + ions detected in coincidence. The MFPADs were compared with ab initio calculations using the time dependent density functional theory. The results of a calculation assuming a localized F 1s core-hole agree better with the observed MFPADs than the results of a calculation using a delocalized core-hole, especially for 775 eV.

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