Dynamics of vibrational energy exchange in collisions of OH and OD radicals with N2. Application to the kinetics of OH-vibrational deactivation in the upper atmosphere
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[1] B. Chalamala,et al. Collision dynamics of OH(X 2Πi,v=12) , 1990 .
[2] Hans-Joachim Werner,et al. Ab initio calculation of the OH (X 2Π, A 2Σ+)+Ar potential energy surfaces and quantum scattering studies of rotational energy transfer in the OH (A 2Σ+) state , 1990 .
[3] J. Jeffries,et al. Vibrational energy transfer in OH X 2Πi, v=2 and 1 , 1990 .
[4] C. Zuhrt,et al. Investigation of the electronically non-adiabatic vibrational transitions Ar + OH(υ = 1) → Ar + OH(υ 0) , 1984 .
[5] T. Kleindienst,et al. The reaction of hydrogen atoms with ozone as a source of vibrationally excited OH(X 2πi)v = 9 for kinetic studies , 1981 .
[6] P. Hess,et al. Comparison of harmonic and anharmonic matrix elements: application to vibrational energy transfer , 1980 .
[7] R. Conn,et al. Analytic fits to several atom–diatom ab initio potential hypersurfaces , 1978 .
[8] Harold S. Johnston,et al. Reactions and quenching of vibrationally excited hydroxyl radicals , 1976 .
[9] G. C. Berend,et al. Vibrational relaxation of HF in Ar , 1973 .
[10] A. Potter,et al. Rates of interaction of vibrationally excited hydroxyl /v = 9/ with diatomic and small polyatomic molecules. , 1972 .
[11] C. A. Brau,et al. Energy Transfer in Near‐Resonant Molecular Collisions due to Long‐Range Forces with Application to Transfer of Vibrational Energy from ν3 Mode of CO2 to N2 , 1969 .
[12] Karl F. Herzfeld,et al. Calculation of Vibrational Relaxation Times in Gases , 1952 .
[13] I. Meinel,et al. OH Emission Bands in the Spectrum of the Night Sky. , 1950 .