Observation of partial wave resonances in low-energy O2-H2 inelastic collisions.
basic_science · Level V
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- Record sourced from PubMed, PMID 24009389.
- Also identified by DOI 10.1126/science.1241395.
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Abstract
Partial wave resonances predicted to occur in bimolecular collision processes have proven challenging to observe experimentally. Here, we report crossed-beam experiments and quantum-scattering calculations on inelastic collisions between ground-state O2 and H2 molecules that provide state-to-state cross sections for rotational excitation of O2 (rotational state N = 1, j = 0) to O2 (N = 1, j = 1) in the vicinity of the thermodynamic threshold at 3.96 centimeter(-1). The close agreement between experimental and theoretical results confirms the classically forbidden character of this collision-induced transition, which occurs exclusively in a purely quantum mechanical regime via shape and Feshbach resonances arising from partial waves with total angular momentum (J) = 2 to 4.
Medical subject headings
- Hydrogen
- Oxygen