Detailed calculations are carried out of the sources of energetic metastable O(1D) atoms in the atmosphere at altitudes between 80 km and 200 km, and the corresponding energy distribution functions are derived, taking account of energy transfer and quenching in collisions of the metastable atoms with the ambient atmospheric gas constituents. The energy relaxation of metastable oxygen atoms produced by O2 and O3 photolysis and O2 + dissociative recombination is determined by solving the time-dependent Boltzmann equation. The O(1D) thermalization and quenching times are obtained as functions of the altitude. The steady state distributions of metastable O(1D) are computed and used for the determination of the parameters characterizing the nont...
A major loss process for the metastable species, O+(2D), in the thermosphere is quenching by electro...
"Hot atoms", which are atoms in their excited states, transfer their energy to the surrounding atmos...
In-situ determinations of the quenching of O(1 D) atoms by N2 and O2 molecules were made from observ...
Detailed calculations are carried out of the sources of energetic metastable O(1D) atoms in the atmo...
Detailed calculations are carried out of the sources of energetic metastable O(1D) atoms in the atmo...
This report summarizes our research performed under NASA Grant NAG5-11857. The three-year grant have...
The 6300 A O(1D-3P) emission has been used for many years to remotely monitor the thermospheric temp...
Calculations are carried out of the elastic scattering and excitation exchange cross-sections in col...
Exothermic reactions involving metastable neutrals and ions were recently proposed as sources of hot...
Thermal and non-thermal O(1D) number density profiles are calculated. The two populations are assume...
This paper demonstrates the variability of thermospheric sources of hot oxygen atoms. Numerical calc...
This paper demonstrates the variability of thermospheric sources of hot oxygen atoms. Numerical calc...
This paper demonstrates the variability of thermospheric sources of hot oxygen atoms. Numerical calc...
This paper investigates new sources of thermospheric non thermal (hot) oxygen due to exothermic reac...
This paper investigates new sources of thermospheric non thermal (hot) oxygen due to exothermic reac...
A major loss process for the metastable species, O+(2D), in the thermosphere is quenching by electro...
"Hot atoms", which are atoms in their excited states, transfer their energy to the surrounding atmos...
In-situ determinations of the quenching of O(1 D) atoms by N2 and O2 molecules were made from observ...
Detailed calculations are carried out of the sources of energetic metastable O(1D) atoms in the atmo...
Detailed calculations are carried out of the sources of energetic metastable O(1D) atoms in the atmo...
This report summarizes our research performed under NASA Grant NAG5-11857. The three-year grant have...
The 6300 A O(1D-3P) emission has been used for many years to remotely monitor the thermospheric temp...
Calculations are carried out of the elastic scattering and excitation exchange cross-sections in col...
Exothermic reactions involving metastable neutrals and ions were recently proposed as sources of hot...
Thermal and non-thermal O(1D) number density profiles are calculated. The two populations are assume...
This paper demonstrates the variability of thermospheric sources of hot oxygen atoms. Numerical calc...
This paper demonstrates the variability of thermospheric sources of hot oxygen atoms. Numerical calc...
This paper demonstrates the variability of thermospheric sources of hot oxygen atoms. Numerical calc...
This paper investigates new sources of thermospheric non thermal (hot) oxygen due to exothermic reac...
This paper investigates new sources of thermospheric non thermal (hot) oxygen due to exothermic reac...
A major loss process for the metastable species, O+(2D), in the thermosphere is quenching by electro...
"Hot atoms", which are atoms in their excited states, transfer their energy to the surrounding atmos...
In-situ determinations of the quenching of O(1 D) atoms by N2 and O2 molecules were made from observ...