The collision-energy resolved rate coefficient for dissociative recombination of HD+ ions in the vibrational ground state is measured using the photocathode electron target at the heavy-ion storage ring TSR. Rydberg resonances associated with ro-vibrational excitation of the HD+ core are scanned as a function of the electron collision energy with an instrumental broadening below 1 meV in the low-energy limit. The measurement is compared to calculations using multichannel quantum defect theory, accounting for rotational structure and interactions and considering the six lowest rotational energy levels as initial ionic states. Using thermal equilibrium level populations at 300 K to approximate the experimental conditions, close correspondence...
Cross-sections are presented for dissociative recombination and electron-impact vibrational excitati...
Dissociative recombination and excitation of H2O+ and HDO+ in the vibrational ground state have been...
Electrons are known to be efficient in rotationally exciting molecular ions in cold ionized media. R...
International audienceThe collision-energy resolved rate coefficient for dissociative recombination ...
Absolute cross sections for dissociative recombination of HD+ were measured in the ion storage CRYRI...
Experimental data are presented from three different heavy-ion storage rings (ASTRID in Aarhus, CRYR...
The article presents calculated dissociative recombination (DR) rate coefficients for H-3(+). The pr...
In storage ring experiments the role, which the initial internal excitation of a molecular ion can p...
The effect of the rotational temperature of the ions is considered for low-energy dissociative recom...
Our approach to the dissociative recombination and competitive processes based on the multichannel q...
The effect of the rotational temperature of the ions is considered for low-energy dissociative recom...
International audienceRate coefficients for dissociative recombination and state-to-state rotational...
International audienceA series of computations based on multichannel quantum defect theory have been...
This Brief Report presents an improved theoretical description of dissociative recombination of HCO(...
Dissociative recombination of molecular ions by collisions with electrons is a reactive collision, i...
Cross-sections are presented for dissociative recombination and electron-impact vibrational excitati...
Dissociative recombination and excitation of H2O+ and HDO+ in the vibrational ground state have been...
Electrons are known to be efficient in rotationally exciting molecular ions in cold ionized media. R...
International audienceThe collision-energy resolved rate coefficient for dissociative recombination ...
Absolute cross sections for dissociative recombination of HD+ were measured in the ion storage CRYRI...
Experimental data are presented from three different heavy-ion storage rings (ASTRID in Aarhus, CRYR...
The article presents calculated dissociative recombination (DR) rate coefficients for H-3(+). The pr...
In storage ring experiments the role, which the initial internal excitation of a molecular ion can p...
The effect of the rotational temperature of the ions is considered for low-energy dissociative recom...
Our approach to the dissociative recombination and competitive processes based on the multichannel q...
The effect of the rotational temperature of the ions is considered for low-energy dissociative recom...
International audienceRate coefficients for dissociative recombination and state-to-state rotational...
International audienceA series of computations based on multichannel quantum defect theory have been...
This Brief Report presents an improved theoretical description of dissociative recombination of HCO(...
Dissociative recombination of molecular ions by collisions with electrons is a reactive collision, i...
Cross-sections are presented for dissociative recombination and electron-impact vibrational excitati...
Dissociative recombination and excitation of H2O+ and HDO+ in the vibrational ground state have been...
Electrons are known to be efficient in rotationally exciting molecular ions in cold ionized media. R...