4.5 Review

Atmospheres of Rocky Exoplanets

期刊

ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS
卷 60, 期 -, 页码 159-201

出版社

ANNUAL REVIEWS
DOI: 10.1146/annurev-astro-052920-125632

关键词

exoplanets; atmospheres; planet formation; chemistry; habitability; biosignatures

资金

  1. National Science Foundation CAREER award [AST-1847120]
  2. Virtual Planetary Laboratory award [UWSC10439]
  3. Max Planck Society

向作者/读者索取更多资源

Rocky planets around other stars are common, but their atmospheric properties are still uncertain. Recent planet discoveries and upcoming advances in observing capability will allow us to characterize the atmospheres of many rocky exoplanets in this decade. Theoretical understanding of rocky exoplanet atmospheres has advanced considerably, providing testable predictions of their evolution, chemistry, dynamics, and possible biosignatures.
Rocky planets are common around other stars, but their atmospheric properties remain largely unconstrained. Thanks to a wealth of recent planet discoveries and upcoming advances in observing capability, we are poised to characterize the atmospheres of dozens of rocky exoplanets in this decade. The theoretical understanding of rocky exoplanet atmospheres has advanced considerably in the last few years, yielding testable predictions of their evolution, chemistry, dynamics, and even possible biosignatures. We review key progress in this field to date and discuss future objectives. Our major conclusions are as follows: Many rocky planets may form with initial H-2-He envelopes that are later lost to space, likely due to a combination of stellar UV/X-ray irradiation and internal heating. After the early stages of evolution, a wide diversity of atmospheric compositions is expected as a result of variations in host star flux, atmospheric escape rates, interior exchange, and other factors. Observations have ruled out both the presence of H-2-dominated atmospheres on several nearby rocky exoplanets and the presence of any thick atmosphere on one target. A more detailed atmospheric characterization of these planets and others will become possible in the near future. Exoplanet biosphere searches are an exciting future goal. However, reliable detections for a representative sample of planets will require further advances in observing capability and improvements in our understanding of abiotic planetary processes.

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