The complex interactions in the upper atmosphere, which control the height-dependent ionospheric response to the 27-day solar rotation period, are investigated with the superposed epoch analysis technique. 27-day signatures describing solar activity are calculated from a solar proxy (F10.7) and wavelength-dependent extreme ultraviolet (EUV) fluxes (Thermosphere Ionosphere Mesosphere Energetics and Dynamics/Solar EUV Experiment), and the corresponding 27-day signatures describing ionospheric conditions are calculated from electron density profiles (Pruhonice ionosonde station) and O2 density profiles (Global-scale Observations of the Limb and Disk). The lag analysis of these extracted signatures is applied to characterize the delayed ionosph...
The delayed ionospheric response is analyzed for two well‐defined 27‐day solar rotation periods in t...
The ionospheric response to solar EUV variability during 2011 - 2014 is shown by an EUV proxy based ...
We investigate the ionospheric response to solar Extreme Ultraviolet (EUV) variations using differe...
The complex interactions in the upper atmosphere, which control the height-dependent ionospheric res...
Based on the analysis of electron density Ne profiles (Grahamstown ionosonde), a case study of the h...
Based on the analysis of electron density Ne profiles (Grahamstown ionosonde), a case study of the h...
Solar EUV radiation is the dominant driver for upper atmosphere ionization. Ionospheric variations t...
The delayed ionospheric response is analyzed for two well-defined 27-day solar rotation periods in t...
Thermospheric and related ionospheric processes react delayed to the variations of solar UV and EUV ...
Physical and chemical processes in the ionosphere are driven by complex interactions with the solar...
This study correlates ionospheric parameters with the integrated solar radiation for an analysis of ...
We analyse solar extreme ultraviolet (EUV) irradiance observed by the Solar EUV Experiment (SEE) onb...
Physical and chemical processes in the ionosphere are driven by complex interactions with the solar ...
The ionospheric response to solar extreme ultraviolet (EUV) variability during 2011–2014 is shown by...
Physical and chemical processes in the ionosphere are driven by complex interactions with the solar ...
The delayed ionospheric response is analyzed for two well‐defined 27‐day solar rotation periods in t...
The ionospheric response to solar EUV variability during 2011 - 2014 is shown by an EUV proxy based ...
We investigate the ionospheric response to solar Extreme Ultraviolet (EUV) variations using differe...
The complex interactions in the upper atmosphere, which control the height-dependent ionospheric res...
Based on the analysis of electron density Ne profiles (Grahamstown ionosonde), a case study of the h...
Based on the analysis of electron density Ne profiles (Grahamstown ionosonde), a case study of the h...
Solar EUV radiation is the dominant driver for upper atmosphere ionization. Ionospheric variations t...
The delayed ionospheric response is analyzed for two well-defined 27-day solar rotation periods in t...
Thermospheric and related ionospheric processes react delayed to the variations of solar UV and EUV ...
Physical and chemical processes in the ionosphere are driven by complex interactions with the solar...
This study correlates ionospheric parameters with the integrated solar radiation for an analysis of ...
We analyse solar extreme ultraviolet (EUV) irradiance observed by the Solar EUV Experiment (SEE) onb...
Physical and chemical processes in the ionosphere are driven by complex interactions with the solar ...
The ionospheric response to solar extreme ultraviolet (EUV) variability during 2011–2014 is shown by...
Physical and chemical processes in the ionosphere are driven by complex interactions with the solar ...
The delayed ionospheric response is analyzed for two well‐defined 27‐day solar rotation periods in t...
The ionospheric response to solar EUV variability during 2011 - 2014 is shown by an EUV proxy based ...
We investigate the ionospheric response to solar Extreme Ultraviolet (EUV) variations using differe...