International audienceSolar proton events and electron precipitation affect the concentrations of middle atmospheric constituents. Ionization caused by precipitating particles enhances the production of important minor neutral constituents, such as nitric oxide, through reaction chains in which ionic reactions play an important role. The Sodankylä Ion Chemistry model (SIC) has been modified and extended into a detailed ion and neutral chemistry model of the mesosphere. Our steady-state model (containing 55 ion species, 8 neutral species, and several hundred chemical reactions) is used to investigate the effect of the October 1989 solar proton event on odd nitrogen at altitudes between 50?90 km. The modelling results show that the NO concent...
The stratospheric and mesospheric impacts of the solar proton events of January 2005 are studied her...
This study presents a new ion-neutral chemical model coupled into the Whole Atmosphere Community Cli...
We have compared composition changes of NO, NO2, H2O2, O3, N2O, HNO3, N2O5, HNO4, ClO, HOCl, and ClO...
Solar proton events and electron precipitation affect the concentrations of middle atmospheric c...
Abstract Atmospheric effects of solar proton events (SPEs) have been studied for decades, because t...
While observed mesospheric polar nitric acid enhancements have been attributed to energetic particle...
While observed mesospheric polar nitric acid enhancements have been attributed to energetic particle...
While observed mesospheric polar nitric acid enhancements have been attributed to energetic particle...
Daily average solar proton flux data for 1978 and 1979 have been used in a proton energy degradation...
Atmospheric ionization events can modify the concentration of neutral species in the stratosphere an...
The 13th Symposium on Polar Science/Ordinary sessions [OS] Space and upper atmospheric sciences, Wed...
We investigate enhancements of mesospheric nitric acid (HNO(3)) in the Northern Hemisphere polar nig...
Observations have shown that a number of neutral minor species are affected by energetic particle pr...
Energetic particle precipitation couples the solar wind to the Earth's atmosphere and indirectly to ...
Energetic particle precipitation (EPP) and ion chemistry affect the neutral composition of the polar...
The stratospheric and mesospheric impacts of the solar proton events of January 2005 are studied her...
This study presents a new ion-neutral chemical model coupled into the Whole Atmosphere Community Cli...
We have compared composition changes of NO, NO2, H2O2, O3, N2O, HNO3, N2O5, HNO4, ClO, HOCl, and ClO...
Solar proton events and electron precipitation affect the concentrations of middle atmospheric c...
Abstract Atmospheric effects of solar proton events (SPEs) have been studied for decades, because t...
While observed mesospheric polar nitric acid enhancements have been attributed to energetic particle...
While observed mesospheric polar nitric acid enhancements have been attributed to energetic particle...
While observed mesospheric polar nitric acid enhancements have been attributed to energetic particle...
Daily average solar proton flux data for 1978 and 1979 have been used in a proton energy degradation...
Atmospheric ionization events can modify the concentration of neutral species in the stratosphere an...
The 13th Symposium on Polar Science/Ordinary sessions [OS] Space and upper atmospheric sciences, Wed...
We investigate enhancements of mesospheric nitric acid (HNO(3)) in the Northern Hemisphere polar nig...
Observations have shown that a number of neutral minor species are affected by energetic particle pr...
Energetic particle precipitation couples the solar wind to the Earth's atmosphere and indirectly to ...
Energetic particle precipitation (EPP) and ion chemistry affect the neutral composition of the polar...
The stratospheric and mesospheric impacts of the solar proton events of January 2005 are studied her...
This study presents a new ion-neutral chemical model coupled into the Whole Atmosphere Community Cli...
We have compared composition changes of NO, NO2, H2O2, O3, N2O, HNO3, N2O5, HNO4, ClO, HOCl, and ClO...