Dayside and Polar Cap Aurora

The auroral emissions in the upper atmosphere of the polar regions of the Earth are evidence of the capture of energetic particles from the Sun, streaming by the Earth as the solar wind. These auroral emissions, then, are a window to outer space, and can provide us with valuable information about el...

Πλήρης περιγραφή

Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριοι συγγραφείς: Sandholt, Per Even (Συγγραφέας), Carlson, Herbert C. (Συγγραφέας), Egeland, Alv (Συγγραφέας)
Συγγραφή απο Οργανισμό/Αρχή: SpringerLink (Online service)
Μορφή: Ηλεκτρονική πηγή Ηλ. βιβλίο
Γλώσσα:English
Έκδοση: Dordrecht : Springer Netherlands, 2002.
Σειρά:Astrophysics and Space Science Library ; 270
Θέματα:
Διαθέσιμο Online:Full Text via HEAL-Link
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100 1 |a Sandholt, Per Even.  |e author. 
245 1 0 |a Dayside and Polar Cap Aurora  |h [electronic resource] /  |c by Per Even Sandholt, Herbert C. Carlson, Alv Egeland. 
264 1 |a Dordrecht :  |b Springer Netherlands,  |c 2002. 
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490 1 |a Astrophysics and Space Science Library ;  |v 270 
505 0 |a Auroral Physics: The Preamble -- Near-Earth Space and Dayside Aurora -- Optical Aurora -- Dayside Auroral Forms and Activities -- Morphology of Polar-Cap Sun-Aligned Arcs -- Theory of Polar-Cap Sun-Aligned Arcs. 
520 |a The auroral emissions in the upper atmosphere of the polar regions of the Earth are evidence of the capture of energetic particles from the Sun, streaming by the Earth as the solar wind. These auroral emissions, then, are a window to outer space, and can provide us with valuable information about electrodynamic coupling processes between the solar wind and the Earth's ionosphere and upper atmosphere. Studying the physics of these phenomena extends our understanding of our plasma universe. Ground-based remote-sensing techniques, able to monitor continuously the variations in the signatures of aurorae, in combination with in-situ satellite and rocket measurements, promise to advance dramatically our understanding of the physical processes taking place at the interface of the atmospheres of the Earth and the Sun. Decoding their complexity brings us closer to reliable prediction of communication environments, especially at high latitudes. This understanding, in turn, will help us resolve problems of communication and navigation across polar regions. 
650 0 |a Physics. 
650 0 |a Atmospheric sciences. 
650 0 |a Astrophysics. 
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650 2 4 |a Atmospheric Sciences. 
650 2 4 |a Atomic, Molecular, Optical and Plasma Physics. 
700 1 |a Carlson, Herbert C.  |e author. 
700 1 |a Egeland, Alv.  |e author. 
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