electron momentum spectroscopy;
(e;
2e) ionization spectroscopy;
density functional theory;
molecular dynamics;
orbital imaging experiments;
POLYCYCLIC AROMATIC-HYDROCARBONS;
VALENCE ONE-ELECTRON;
CORRELATED MOLECULAR CALCULATIONS;
GREENS-FUNCTION CALCULATIONS;
SHAM ORBITAL ENERGIES;
UP IONIZATION BANDS;
GAUSSIAN-BASIS SETS;
AB-INITIO;
KOHN-SHAM;
PHOTOELECTRON-SPECTRA;
D O I:
10.1088/0953-4075/49/7/075102
中图分类号:
O43 [光学];
学科分类号:
070207 ;
0803 ;
摘要:
The electronic structure, electron binding energy spectrum and (e, 2e) momentum distributions of aniline have been theoretically predicted at an electron impact energy of 1.500 keV on the basis of Born-Oppenheimer molecular dynamical simulations, in order to account for thermally induced nuclear motions in the initial electronic ground state. Most computed momentum profiles are rather insensitive to thermally induced alterations of the molecular structure, with the exception of the profiles corresponding to two ionization bands at electron binding energies comprised between similar to 10.0 and similar to 12.0 eV (band C) and between similar to 16.5 and similar to 20.0 eV (band G). These profiles are found to be strongly influenced by nuclear dynamics in the electronic ground state, especially in the low momentum region. The obtained results show that thermal averaging smears out most generally the spectral fingerprints that are induced by nitrogen inversion.