In a molecular Auger spectrum information on the decaying state is implicitly ensemble-averaged. For a repulsive core-ionized state, for example, contributions from all parts of its potential curve are superimposed in the Auger spectrum. Using carbon tetrafluoride (CF4, tetrafluoromethane), we demonstrate for the first time that these contributions can be disentangled by recording photoelectron–Auger electron coincidence spectra with high energy resolution. For the F K-VV spectrum of CF4, there are significant differences in the Auger decay at different intermediate state (single core hole) geometries. With the help of calculations, we show that these differences result primarily from zero-point fluctuations in the neutral molecular ground ...
Results of the most sophisticated measurements in coincidence with the angular-resolved K-shell phot...
Photoelectron-Auger electron coincidence spectroscopy is a powerful tool for the investigation of Au...
Energies of the hollow molecules CH42+ and NH32+ with double vacancies in the 1s shells have been me...
The carbon and fluorine Auger spectra for the fluoromethane series of molecules, CH4-nFn, n=1...4, h...
The resonant Auger spectrum from the decay of F 1s-excited CF4 is measured. Several lines exhibit a ...
We present a theoretical and experimental study of the electronic structure of N-methyltrifluoroacet...
A dramatic symmetry breaking in K-shell photoionization of the CF4 molecule in which a core-hole vac...
Following core excitation in an isolated molecule, ultrafast dissociation of one particular chemical...
Resonant F 1s excitation of SF5, CF4 and CH3F molecules has been used to initiate ultrafast fragment...
In many cases fragmentation of molecules upon inner-shell ionization is very unspecific with respect...
In many cases fragmentation of molecules upon inner-shell ionization is very unspecific with respect...
Photoelectron-Auger electron coincidence spectroscopy is a powerful tool for the investigation of Au...
Abstract In many cases fragmentation of molecules upon inner-shell ionization is very unspecific wi...
International audienceBy combining multiple electron coincidence detection with ionization by synchr...
We present high-resolution photoelectron–Auger-electron coincidence spectra of methane (CH4). Since ...
Results of the most sophisticated measurements in coincidence with the angular-resolved K-shell phot...
Photoelectron-Auger electron coincidence spectroscopy is a powerful tool for the investigation of Au...
Energies of the hollow molecules CH42+ and NH32+ with double vacancies in the 1s shells have been me...
The carbon and fluorine Auger spectra for the fluoromethane series of molecules, CH4-nFn, n=1...4, h...
The resonant Auger spectrum from the decay of F 1s-excited CF4 is measured. Several lines exhibit a ...
We present a theoretical and experimental study of the electronic structure of N-methyltrifluoroacet...
A dramatic symmetry breaking in K-shell photoionization of the CF4 molecule in which a core-hole vac...
Following core excitation in an isolated molecule, ultrafast dissociation of one particular chemical...
Resonant F 1s excitation of SF5, CF4 and CH3F molecules has been used to initiate ultrafast fragment...
In many cases fragmentation of molecules upon inner-shell ionization is very unspecific with respect...
In many cases fragmentation of molecules upon inner-shell ionization is very unspecific with respect...
Photoelectron-Auger electron coincidence spectroscopy is a powerful tool for the investigation of Au...
Abstract In many cases fragmentation of molecules upon inner-shell ionization is very unspecific wi...
International audienceBy combining multiple electron coincidence detection with ionization by synchr...
We present high-resolution photoelectron–Auger-electron coincidence spectra of methane (CH4). Since ...
Results of the most sophisticated measurements in coincidence with the angular-resolved K-shell phot...
Photoelectron-Auger electron coincidence spectroscopy is a powerful tool for the investigation of Au...
Energies of the hollow molecules CH42+ and NH32+ with double vacancies in the 1s shells have been me...