The space weather discipline involves different physical scenarios, which are characterised by very different physical conditions, ranging from the Sun to the terrestrial magnetosphere and ionosphere. Thanks to the great modelling effort made during the last years, a few Sun-to-ionosphere/thermosphere physics-based numerical codes have been developed. However, the success of the prediction is still far from achieving the desirable results and much more progress is needed. Some aspects involved in this progress concern both the technical progress (developing and validating tools to forecast, selecting the optimal parameters as inputs for the tools, improving accuracy in prediction with short lead time, etc.) and the scientific development, i...
The terrestrial atmospheric region between the altitudes of 90 km and 600 km is known as the thermos...
Space weather events with their solar origin and their distribution through the heliosphere affect t...
The discipline of "Space Weather" is built on the scientific foundation of solar-terrestrial physics...
The space weather discipline involves different physical scenarios, which are characterised by very ...
This thesis presents studies of solar wind-magnetosphere coupling using dynamic neural networks in c...
The Sun and the solar magnetic activity is responsible for a variety of effects in space and on the ...
A solar magnetic field is continuously being created in the solar interior. As the field evolves out...
This thesis shows how artificial neural networks (ANNs) can be applied to predict geomagnetic activi...
The magnetosphere is the lens through which solar space weather phenomena are focused and directed t...
This thesis concerns the application of artificial neural network techniques to space weather physic...
Abstract. The dynamics of the upper atmosphere is strongly controlled by the intensity of the solar ...
This thesis investigates energy transfer between solar wind (SW)-magnetosphere-ionosphere systems du...
The discipline of "Space Weather" is built on the scientific foundation of solar-terrestrial physics...
Interest in forecasting space weather in the thermosphere and ionosphere (T-I) led to a community wo...
Interest in forecasting space weather in the thermosphere and ionosphere (T-I) led to a community wo...
The terrestrial atmospheric region between the altitudes of 90 km and 600 km is known as the thermos...
Space weather events with their solar origin and their distribution through the heliosphere affect t...
The discipline of "Space Weather" is built on the scientific foundation of solar-terrestrial physics...
The space weather discipline involves different physical scenarios, which are characterised by very ...
This thesis presents studies of solar wind-magnetosphere coupling using dynamic neural networks in c...
The Sun and the solar magnetic activity is responsible for a variety of effects in space and on the ...
A solar magnetic field is continuously being created in the solar interior. As the field evolves out...
This thesis shows how artificial neural networks (ANNs) can be applied to predict geomagnetic activi...
The magnetosphere is the lens through which solar space weather phenomena are focused and directed t...
This thesis concerns the application of artificial neural network techniques to space weather physic...
Abstract. The dynamics of the upper atmosphere is strongly controlled by the intensity of the solar ...
This thesis investigates energy transfer between solar wind (SW)-magnetosphere-ionosphere systems du...
The discipline of "Space Weather" is built on the scientific foundation of solar-terrestrial physics...
Interest in forecasting space weather in the thermosphere and ionosphere (T-I) led to a community wo...
Interest in forecasting space weather in the thermosphere and ionosphere (T-I) led to a community wo...
The terrestrial atmospheric region between the altitudes of 90 km and 600 km is known as the thermos...
Space weather events with their solar origin and their distribution through the heliosphere affect t...
The discipline of "Space Weather" is built on the scientific foundation of solar-terrestrial physics...