most citedAquaplanet Models on Eccentric Orbits: Effects of Rotation Rate on Observables

13 citations · 24 across the 5 of their papers we have counts for

collaborators

5 papers

astro-ph.EP2019

Reconstructing Extreme Space Weather from Planet Hosting Stars

V. S. Airapetian, V. Adibekyan, M. Ansdell +80

The field of exoplanetary science is making rapid progress both in statistical studies of exoplanet properties as well as in individual characterization. As space missions provide…

astro-ph.EP201913 cited

Aquaplanet Models on Eccentric Orbits: Effects of Rotation Rate on Observables

Arthur D. Adams, William R. Boos, Eric T. Wolf

Rotation and orbital eccentricity both strongly influence planetary climate. Eccentricities can often be measured for exoplanets, but rotation rates are currently difficult or impo…

astro-ph.EP20197 cited

A Statistical Comparative Planetology Approach to Maximize the Scientific Return of Future Exoplanet Characterization Efforts

Jade H. Checlair, Dorian S. Abbot, Robert J. Webber +37

Provided that sufficient resources are deployed, we can look forward to an extraordinary future in which we will characterize potentially habitable planets. Until now, we have had…

astro-ph.EP20194 cited

The Importance of 3D General Circulation Models for Characterizing the Climate and Habitability of Terrestrial Extrasolar Planets

Eric T. Wolf, Ravi Kopparapu, Vladimir Airapetian +27

While recently discovered exotic new planet-types have both challenged our imaginations and broadened our knowledge of planetary system workings, perhaps the most compelling object…

astro-ph.EP2016

Geostrophic wind induced by latitudinal variation in gravitational acceleration on oblate planets

Jacob Haqq-Misra, Prabal Saxena, Eric T. Wolf +1

The population of known extrasolar planets includes giant and terrestrial planets that closely orbit their host star. Such planets experience significant tidal distortions that can…