Except for a few reactions involving electronically excited molecular or atomic oxygen or nitrogen, atmospheric chemistry modelling usually assumes that the temperature dependence of reaction rates is characterized by Arrhenius' law involving kinetic temperatures. It is known, however, that in the upper atmosphere the vibrational temperatures may exceed the kinetic temperatures by several hundreds of Kelvins. This excess energy has an impact on the reaction rates. We have used upper atmospheric OH populations and reaction rate coefficients for OH(<i>v</i>=0...9)+O<sub>3</sub> and OH(<i>v</i>=0...9)+O to estimate the effective (i.e. population weighted) reaction rates for various atmospheric conditions. We...
Reactions that inter-convert OH and HO_2 are directly involved in the catalytic removal of O_3 in th...
The purpose of this project was to quantify the rates of two processes which are crucial to our unde...
The effect of temperature fluctuations on atmospheric ozone chemistry is examined by considering the...
Except for a few reactions involving electronically excited molecular or atomic oxygen or nitrogen, ...
Theoretical calculations show that above 80 km in the earth's atmosphere the production of vibration...
Vibrationally excited O2, OH, and HO2 species have been suggested (J. Phys. Chem. A 2004, 108, 758) ...
The dynamics of the title five-atom atmospheric reaction is studied by the quasiclassical trajectory...
Photolysis of vibrationally excited oxygen produced by ultraviolet photolysis of ozone in the upper ...
Do vibrationally excited OH molecules affect middle and upper atmospheric chemistry
We report a theoretical study of the title five-atom atmospheric reaction for vibrationally excited ...
It has been suggested that in photon-dominated regions, oxygen chemistry is initiated by the O+H2 yi...
G.~Piccioni~\textit{et~al. A.~G.~Garcia-Mu\~{nAuthor Institution: SRI International, Molecular Phys...
We investigate the relaxation of highly vibrationally excited HO2 in collisions with vibrationally c...
We report a theoretical study of highly excited O3 in collisions with vibrationally cold OH. Special...
The layer of vibrationally excited hydroxyl (OH*) near the mesopause in Earth's atmosphere is widely...
Reactions that inter-convert OH and HO_2 are directly involved in the catalytic removal of O_3 in th...
The purpose of this project was to quantify the rates of two processes which are crucial to our unde...
The effect of temperature fluctuations on atmospheric ozone chemistry is examined by considering the...
Except for a few reactions involving electronically excited molecular or atomic oxygen or nitrogen, ...
Theoretical calculations show that above 80 km in the earth's atmosphere the production of vibration...
Vibrationally excited O2, OH, and HO2 species have been suggested (J. Phys. Chem. A 2004, 108, 758) ...
The dynamics of the title five-atom atmospheric reaction is studied by the quasiclassical trajectory...
Photolysis of vibrationally excited oxygen produced by ultraviolet photolysis of ozone in the upper ...
Do vibrationally excited OH molecules affect middle and upper atmospheric chemistry
We report a theoretical study of the title five-atom atmospheric reaction for vibrationally excited ...
It has been suggested that in photon-dominated regions, oxygen chemistry is initiated by the O+H2 yi...
G.~Piccioni~\textit{et~al. A.~G.~Garcia-Mu\~{nAuthor Institution: SRI International, Molecular Phys...
We investigate the relaxation of highly vibrationally excited HO2 in collisions with vibrationally c...
We report a theoretical study of highly excited O3 in collisions with vibrationally cold OH. Special...
The layer of vibrationally excited hydroxyl (OH*) near the mesopause in Earth's atmosphere is widely...
Reactions that inter-convert OH and HO_2 are directly involved in the catalytic removal of O_3 in th...
The purpose of this project was to quantify the rates of two processes which are crucial to our unde...
The effect of temperature fluctuations on atmospheric ozone chemistry is examined by considering the...