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Albedos, Equilibrium Temperatures, and Surface Temperatures of Habitable Planets

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arxiv 1812.06606 v1 pith:PSNHCTCF submitted 2018-12-17 astro-ph.EP

classification astro-ph.EP
keywords temperatureequilibriumalbedoplanetssurfacebecausebondhabitability
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The potential habitability of known exoplanets is often categorized by a nominal equilibrium temperature assuming a Bond albedo of either 0.3, similar to Earth, or 0. As an indicator of habitability, this leaves much to be desired, because albedo on other planets can be very different, and because surface temperature exceeds equilibrium temperature due to the atmospheric greenhouse effect. We use an ensemble of 3-dimensional general circulation model simulations to show that for a range of habitable planets, much of the variability of Bond albedo, equilibrium temperature, and even surface temperature can be predicted with useful accuracy from incident stellar flux and stellar temperature, two known external parameters for every confirmed exoplanet.

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    physics.pop-ph 2019-08 conditional novelty 3.0 of 10

    Including speculative silicon-based life in nitrogen lakes can tighten the upper limit on the fraction of intelligent species that develop communication technology by up to a factor of six.

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