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September 2, 2009The Astrophysical Journal173 citationsOpen Access

Thermal Escape From Super Earth Atmospheres in the Habitable Zones of M Stars

FTFeng Tian

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Abstract

A fundamental question for exoplanet habitability is the long-term stability of the planet's atmosphere. We numerically solve a one-dimensional multi-component hydrodynamic thermosphere/ionosphere model to examine the thermal and chemical responses of the primary CO 2 atmospheres of heavy super Earths (6–10 Earth masses) in the habitable zones of typical low-mass M stars to the enhanced soft X-ray and ultraviolet (XUV) fluxes associated with the prolonged high-activity levels of M stars. The results show that such atmospheres are stable against thermal escape, even for M stars XUV enhancements as large as 1000 compared to the present Earth. It is possible that the CO 2 -dominant atmospheres of super Earths in the habitable zones of M stars could potentially contain modest amount of free oxygen as a result of more efficient atmosphere escape of carbon than oxygen instead of photosynthesis.

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Feng Tian (2009) studied this question.

synapsesocial.com/papers/6a7cbf03f1688b70c0611796https://doi.org/10.1088/0004-637x/703/1/905
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