The internal energy distribution of ammonia formed in the dissociative recombination (DR) of NH4+ with electrons has been studied by an imaging technique at the ion storage ring CRYRING. The DR process resulted in the formation of NH3 + H (0.90 ± 0.01), with minor contributions from channels producing NH2 + H2 (0.05 ± 0.01) and NH2 + 2H (0.04 ± 0.02). The formed NH3 molecules were highly internally excited, with a mean rovibrational energy of 3.3 ± 0.4 eV, which corresponds to 70% of the energy released in the neutralization process. The internal energy distribution was semiquantitatively reproduced by ab initio direct dynamics simulations, and the calculations suggested that the NH3 molecules are highly vibrationally excited while rotation...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...
The internal energy distribution of ammonia formed in the dissociative recombination (DR) of NH4+ wi...
The dissociative recombination (DR) process of NH4+ and ND4+ molecular ions with free electrons has ...
The dissociative recombination (DR) process of NH4+ and ND4+ molecular ions with free electrons has ...
We have investigated electron capture by NH<sup>+</sup> resulting in dissociative recombination (DR)...
We have investigated electron capture by NH+ resulting in dissociative recombination (DR). The impac...
We have investigated dissociative recombination (DR) of NH+ with electrons using a merged beams conf...
We have investigated dissociative recombination (DR) of NH+ with electrons using a merged beams conf...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...
The internal energy distribution of ammonia formed in the dissociative recombination (DR) of NH4+ wi...
The dissociative recombination (DR) process of NH4+ and ND4+ molecular ions with free electrons has ...
The dissociative recombination (DR) process of NH4+ and ND4+ molecular ions with free electrons has ...
We have investigated electron capture by NH<sup>+</sup> resulting in dissociative recombination (DR)...
We have investigated electron capture by NH+ resulting in dissociative recombination (DR). The impac...
We have investigated dissociative recombination (DR) of NH+ with electrons using a merged beams conf...
We have investigated dissociative recombination (DR) of NH+ with electrons using a merged beams conf...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceCross sections for dissociative recombination (DR) and vibrational excitation ...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...