International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction has been measured for the first time at collision energies from 0.820 down to 0.078 kJ mol(-1) in a high-resolution crossed beam experiment. The excitation function obtained exhibits a non-monotonic variation with collision energy and compares well with the results of high-level quantum calculations. In particular, the structures observed in the lower energy part, where only a few partial waves contribute, can be described in terms of the sequential opening of individual channels, consistent with the theoretical calculations
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
We present the results of a joint experimental and theoretical investigation of the reaction dynamic...
Crossed molecular beam experiments and accurate quantum scattering calculations have been carried ou...
International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction h...
International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction h...
International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction h...
International audienceWe report combined studies on the prototypical S(1D2) + H2 insertion reaction....
We report integral cross sections for the S(1D2) + HD(j = 0) → DS + H and HS + D reaction channels o...
International audienceThe excitation function of the S((1)D) + D2 reaction was determined in a cross...
International audienceThe excitation function of the S((1)D) + D2 reaction was determined in a cross...
Using a merged-beam apparatus, the authors have measured the absolute cross section for the associat...
The H+H-2 reaction is the simplest chemical reaction system and has long been the prototype model in...
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
We present exact quantum integral and differential cross sections for the title reaction from a time...
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
We present the results of a joint experimental and theoretical investigation of the reaction dynamic...
Crossed molecular beam experiments and accurate quantum scattering calculations have been carried ou...
International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction h...
International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction h...
International audienceThe integral cross section of the S((1)D(2)) + H(2)(j = 0) → SH + H reaction h...
International audienceWe report combined studies on the prototypical S(1D2) + H2 insertion reaction....
We report integral cross sections for the S(1D2) + HD(j = 0) → DS + H and HS + D reaction channels o...
International audienceThe excitation function of the S((1)D) + D2 reaction was determined in a cross...
International audienceThe excitation function of the S((1)D) + D2 reaction was determined in a cross...
Using a merged-beam apparatus, the authors have measured the absolute cross section for the associat...
The H+H-2 reaction is the simplest chemical reaction system and has long been the prototype model in...
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
We present exact quantum integral and differential cross sections for the title reaction from a time...
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
International audienceReactive cross-sections for the collision of open shell S((1)D) atoms with ort...
We present the results of a joint experimental and theoretical investigation of the reaction dynamic...
Crossed molecular beam experiments and accurate quantum scattering calculations have been carried ou...