An updated version of a proxy, termed EUV-TEC, describing the global total primary photoionisation is calculated from satellite-borne EUV measurements assuming a model atmosphere consisting of four major atmospheric constituents. Regional number densities of the background atmosphere are taken from the NRLMSISE-00 climatology. For calculation the Lambert-Beer law is used to describe the decrease of the radiation along their way through the atmosphere. The EUV-TEC proxy thus describes the ionospheric response to solar EUV radiation and its variability. EUV-TEC is compared against the global mean total electron content (TEC), a fundamental ionospheric parameter created from vertical TEC maps derived from GPS data. Strong correlation between t...
For several decades, proxies for solar activity (such as the f10.7 and Mg II indices), rather than d...
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 b...
Primary photoionisation of major ionospheric constituents is calculated from satellite-borne solar E...
An updated version of a proxy, termed EUV-TEC, describing the global total primary photoionisation i...
An updated version of the EUV-TEC proxy, describing the total primary ionisation of the upper atmosp...
Primary ionisation of major ionospheric constituents is calculated from satellite-borne solar EUV me...
Primary ionisation of major ionospheric constituents is calculated from satellite-borne solar EUV me...
We investigate the ionospheric response to solar Extreme Ultraviolet (EUV) variations using differen...
Ionospheric response to solar EUV variability during late 2012 through mid 2013 is shown by the EUV-...
The ionospheric response to solar EUV variability during 2011 - 2014 is shown by an EUV proxy based ...
The ionospheric response to solar extreme ultraviolet (EUV) variability during 2011-2014 is shown by...
Ionospheric response to solar EUV variability during 2012 - 2014 is shown by the EUV-TEC proxy based...
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 ...
For several decades, proxies for solar activity (such as the f10.7 and Mg II indices), rather than d...
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 b...
Primary photoionisation of major ionospheric constituents is calculated from satellite-borne solar E...
An updated version of a proxy, termed EUV-TEC, describing the global total primary photoionisation i...
An updated version of the EUV-TEC proxy, describing the total primary ionisation of the upper atmosp...
Primary ionisation of major ionospheric constituents is calculated from satellite-borne solar EUV me...
Primary ionisation of major ionospheric constituents is calculated from satellite-borne solar EUV me...
We investigate the ionospheric response to solar Extreme Ultraviolet (EUV) variations using differen...
Ionospheric response to solar EUV variability during late 2012 through mid 2013 is shown by the EUV-...
The ionospheric response to solar EUV variability during 2011 - 2014 is shown by an EUV proxy based ...
The ionospheric response to solar extreme ultraviolet (EUV) variability during 2011-2014 is shown by...
Ionospheric response to solar EUV variability during 2012 - 2014 is shown by the EUV-TEC proxy based...
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 ...
For several decades, proxies for solar activity (such as the f10.7 and Mg II indices), rather than d...
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 b...