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Habitable zones around main-sequence stars: New estimates
Ravi Kumar Kopparapu
, Ramses Ramirez
, James F. Kasting
, Vincent Eymet
, Tyler D. Robinson
,
Suvrath Mahadevan
, Ryan C. Terrien
, Shawn Domagal-Goldman
, Victoria Meadows
, Rohit Deshpande
Geosciences
Center for Exoplanets & Habitable Worlds
Astronomy & Astrophysics
Research output
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Contribution to journal
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Article
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peer-review
1355
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Scopus citations
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Dive into the research topics of 'Habitable zones around main-sequence stars: New estimates'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Climate Modeling
100%
Main Sequence Stars
100%
Water Loss
100%
Radial Velocity
66%
Solar System
66%
Carbon Dioxide
66%
M Stars
66%
Terrestrial Planet
66%
K Stars
66%
Convection Clouds
33%
Albedo
33%
Kepler Mission
33%
Extrasolar Planet
33%
Habitability
33%
G Stars
33%
Space Mission
33%
F Star
33%
Protective Atmosphere
33%
Absorption
33%
Keyphrases
Habitable Zone
100%
Main Sequence Stars
100%
Water Loss
36%
Greenhouse
27%
Climate Models
27%
Solar System
18%
MSTAR
18%
Korea Superconducting Tokamak Advanced Research (KSTAR)
18%
HITEMP
18%
Clear Distinction
9%
Terrestrial Planets
9%
Model Calculation
9%
Radial Velocity Estimation
9%
Radial Velocity
9%
Lower Limit
9%
Absorption Coefficient
9%
Exoplanets
9%
Effective Temperature
9%
Form Making
9%
Kepler Mission
9%
Band Model
9%
Equilibrium Temperature
9%
CO2 Atmosphere
9%
Zones Boundary
9%
CO2 Absorption
9%
Convective Clouds
9%
Outer Edge
9%
F Stars
9%
Darwin
9%
Radiative Effect
9%
Habitability
9%
Extrasolar Terrestrial Planets
9%
Future Space Missions
9%
Parametric Form
9%
Runaway Greenhouse
9%
Current Estimation
9%
Host Star
9%
Spectral Type
9%
Bond Albedo
9%
Physics
Habitable Zone
100%
Main Sequence Stars
100%
Radial-Velocity Method
18%
M Stars
18%
K Stars
18%
Carbon Dioxide
18%
Terrestrial Planet
18%
Stellar Classification
9%
Extrasolar Planet
9%
Kepler Mission
9%
F Star
9%
Albedo
9%
G Stars
9%
Protective Atmosphere
9%
Space Mission
9%