The study focuses on the rapid geometry change in ethyne, excited near the carbon 1s edge. Core excitation and ionization leads to population of dicationic states in ethyne. We study three competing dissociation pathways associated with deprotonation in the linear ethyne molecule, and two cases of rapid proton migration. We investigate the alignment of the molecule in the excited state, and find startling differences in these three cases. We present evidence for a strong anisotropy in the production of H+2 /C+2 fragments through a rapid deformation of the molecule to a dibridged conformation with the transition dipole moment parallel to the polarization of the exciting radiation
A study highlighting several aspects of resonant spectroscopies where fragmentation processes are in...
We present experimental measurements and theoretical calculations for the photoionization of\ud CH4 ...
The angular anisotropy of fragments created in the dissociation of core-electron excited water molec...
The study focuses on the rapid geometry change in ethyne excited near the carbon 1s edge. Core excit...
International audienceissociations of the ethyne dication following its production by photoionizatio...
Experimental studies of core-excited molecules using three-dimensional multi particle momentum imagi...
We present kinematically complete measurements of the photo-double-ionization of ethylene (double CC...
The two-body dissociation reactions of the dication, C2H22+, produced by 39.0 eV double photoionizat...
We present a combined experimental and computational study of the relaxation dynamics of the ethylen...
We present a combined experimental and computational study of the relaxation dynamics of the ethylen...
Rapid proton migration is a key process in hydrocarbon photochemistry. Charge migration and subseque...
The two-body dissociation reactions of the dication C2H2 +2, initiated via double ionization of acet...
The ultrafast nuclear dynamics of the acetylene cation C2H2+ following photoionization of the neutra...
We report measurements on the H++H+ fragmentation channel following direct single-photon double ioni...
Rapid proton migration is a key process in hydrocarbon photochemistry. Charge migration and subseque...
A study highlighting several aspects of resonant spectroscopies where fragmentation processes are in...
We present experimental measurements and theoretical calculations for the photoionization of\ud CH4 ...
The angular anisotropy of fragments created in the dissociation of core-electron excited water molec...
The study focuses on the rapid geometry change in ethyne excited near the carbon 1s edge. Core excit...
International audienceissociations of the ethyne dication following its production by photoionizatio...
Experimental studies of core-excited molecules using three-dimensional multi particle momentum imagi...
We present kinematically complete measurements of the photo-double-ionization of ethylene (double CC...
The two-body dissociation reactions of the dication, C2H22+, produced by 39.0 eV double photoionizat...
We present a combined experimental and computational study of the relaxation dynamics of the ethylen...
We present a combined experimental and computational study of the relaxation dynamics of the ethylen...
Rapid proton migration is a key process in hydrocarbon photochemistry. Charge migration and subseque...
The two-body dissociation reactions of the dication C2H2 +2, initiated via double ionization of acet...
The ultrafast nuclear dynamics of the acetylene cation C2H2+ following photoionization of the neutra...
We report measurements on the H++H+ fragmentation channel following direct single-photon double ioni...
Rapid proton migration is a key process in hydrocarbon photochemistry. Charge migration and subseque...
A study highlighting several aspects of resonant spectroscopies where fragmentation processes are in...
We present experimental measurements and theoretical calculations for the photoionization of\ud CH4 ...
The angular anisotropy of fragments created in the dissociation of core-electron excited water molec...