Electron-ion-ion coincidence measurements carried out at discrete resonances near the N 1s threshold in ammonia are reported. The measured coincidence spectra show clear alignment of the molecule upon resonant core-electron excitation. The coincidence data are analyzed to extract information about the molecule in the excited state by simulating the alignment and the dissociation processes. Dynamic changes in molecular geometry are found as the photon energy is scanned through the N 1s -> 4a(1) resonance, whereas for the N 1s -> 2e state the geometry and kinetic energy released upon dissociation remain unchanged. The alignment of the core-excited molecules is found to be preserved even in two-step dissociation processes
Electron analysis combined with ion mass spectrometry is shown to be a unique tool to understand fra...
AbstractThe extent to which the spatial orientation of internally and translationally cold ammonia m...
The internal energy distribution of ammonia formed in the dissociative recombination (DR) of NH4+ wi...
A study highlighting several aspects of resonant spectroscopies where fragmentation processes are in...
Negative ion resonance states of ammonia are accessed upon capture of electrons with energy 5.5 eV a...
Fragmentation dynamics of core-excited isolated ammonia molecules is studied by two different and co...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706We ha...
Ab initio theoretical studies and momentum-imaging experiments are combined to provide a consistent ...
We present evidence for ultra-fast dissociation of molecular ammonia when photo-excited to the Nls -...
The dissociation dynamics of the $\tilde{A}$-state of ammonia have been studied using a resonant mul...
We have investigated electron capture by NH<sup>+</sup> resulting in dissociative recombination (DR)...
Nuclear motion in the N1s(-1)4a(1)(1) core-excited state of ammonia is investigated by studying the ...
The dissociation of ammonia dications induced by 300 eV electron impact has been studied using a col...
The extent to which the spatial orientation of internally and translationally cold ammonia molecules...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Veloc...
Electron analysis combined with ion mass spectrometry is shown to be a unique tool to understand fra...
AbstractThe extent to which the spatial orientation of internally and translationally cold ammonia m...
The internal energy distribution of ammonia formed in the dissociative recombination (DR) of NH4+ wi...
A study highlighting several aspects of resonant spectroscopies where fragmentation processes are in...
Negative ion resonance states of ammonia are accessed upon capture of electrons with energy 5.5 eV a...
Fragmentation dynamics of core-excited isolated ammonia molecules is studied by two different and co...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706We ha...
Ab initio theoretical studies and momentum-imaging experiments are combined to provide a consistent ...
We present evidence for ultra-fast dissociation of molecular ammonia when photo-excited to the Nls -...
The dissociation dynamics of the $\tilde{A}$-state of ammonia have been studied using a resonant mul...
We have investigated electron capture by NH<sup>+</sup> resulting in dissociative recombination (DR)...
Nuclear motion in the N1s(-1)4a(1)(1) core-excited state of ammonia is investigated by studying the ...
The dissociation of ammonia dications induced by 300 eV electron impact has been studied using a col...
The extent to which the spatial orientation of internally and translationally cold ammonia molecules...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Veloc...
Electron analysis combined with ion mass spectrometry is shown to be a unique tool to understand fra...
AbstractThe extent to which the spatial orientation of internally and translationally cold ammonia m...
The internal energy distribution of ammonia formed in the dissociative recombination (DR) of NH4+ wi...