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A sublimation-driven exospheric model of ceres
L. Tu,
W. H. Ip
, Y. C. Wang
天文研究所
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
17
引文 斯高帕斯(Scopus)
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深入研究「A sublimation-driven exospheric model of ceres」主題。共同形成了獨特的指紋。
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Keyphrases
Sublimation
100%
CERES
100%
Outgassing
75%
Production Rate
50%
Water Vapor
50%
Water Molecule
50%
Herschel
50%
Surface Morphology
25%
Water Sources
25%
Exosphere
25%
Polar Cap
25%
Source Mechanism
25%
Source Area
25%
Solar Wind Interaction
25%
Ballistic Transport
25%
Injection Speed
25%
Meteorite Impact
25%
Global Sources
25%
Polar Ice
25%
Escape Velocity
25%
Vesta
25%
Water Detection
25%
Thermal Sublimation
25%
Surface-bounded Exosphere
25%
Mineralogical Composition
25%
Dwarf Planet Ceres
25%
Chemical Sputtering
25%
Dawn Spacecraft
25%
Localized Source
25%
Water Plume
25%
Cold Trap
25%
Ice Storage
25%
Engineering
Surface Morphology
100%
Subsurface
100%
Source Region
100%
NASA
100%
Potential Source
100%
Injection Speed
100%
Localized Source
100%
Mineralogical Composition
100%
Cold Trap
100%
Escape Velocity
100%
Earth and Planetary Sciences
Outgassing
100%
Degassing
100%
Exosphere
66%
Spacecraft
33%
Solar Wind
33%
Polar Cap
33%
Meteor
33%
Dwarf Planet
33%
Recycling
33%
Escape Velocity
33%
Cold Trap
33%
Physics
Outgassing
100%
Exosphere
66%
Polar Cap
33%
Spacecraft
33%
Solar Wind
33%
Escape Velocity
33%
Dwarf Planet
33%
Cold Trap
33%
Meteor
33%
Material Science
Surface (Surface Science)
100%
Water Vapor
50%
Surface Morphology
25%
Spacecraft
25%
Phase Composition
25%