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Geophysical and atmospheric evolution of habitable planets.

Authors :
Lammer H
Selsis F
Chassefière E
Breuer D
Griessmeier JM
Kulikov YN
Erkaev NV
Khodachenko ML
Biernat HK
Leblanc F
Kallio E
Lundin R
Westall F
Bauer SJ
Beichman C
Danchi W
Eiroa C
Fridlund M
Gröller H
Hanslmeier A
Hausleitner W
Henning T
Herbst T
Kaltenegger L
Léger A
Leitzinger M
Lichtenegger HI
Liseau R
Lunine J
Motschmann U
Odert P
Paresce F
Parnell J
Penny A
Quirrenbach A
Rauer H
Röttgering H
Schneider J
Spohn T
Stadelmann A
Stangl G
Stam D
Tinetti G
White GJ
Source :
Astrobiology [Astrobiology] 2010 Jan-Feb; Vol. 10 (1), pp. 45-68.
Publication Year :
2010

Abstract

The evolution of Earth-like habitable planets is a complex process that depends on the geodynamical and geophysical environments. In particular, it is necessary that plate tectonics remain active over billions of years. These geophysically active environments are strongly coupled to a planet's host star parameters, such as mass, luminosity and activity, orbit location of the habitable zone, and the planet's initial water inventory. Depending on the host star's radiation and particle flux evolution, the composition in the thermosphere, and the availability of an active magnetic dynamo, the atmospheres of Earth-like planets within their habitable zones are differently affected due to thermal and nonthermal escape processes. For some planets, strong atmospheric escape could even effect the stability of the atmosphere.

Details

Language :
English
ISSN :
1557-8070
Volume :
10
Issue :
1
Database :
MEDLINE
Journal :
Astrobiology
Publication Type :
Academic Journal
Accession number :
20307182
Full Text :
https://doi.org/10.1089/ast.2009.0368