Assessing the Interior Structure of Terrestrial Exoplanets with Implications for Habitability
arXiv:1710.05605 · doi:10.1007/978-3-319-55333-7_66
Abstract
Astrophysical observations reveal a large diversity of radii and masses of exoplanets. It is important to characterize the interiors of exoplanets to understand planetary diversity and further determine how unique, or not, Earth is. Assessing interior structure is challenging because there are few data and large uncertainties. Thus, for a given exoplanet a range of interior structure models can satisfy available data. Typically, interior models aim to constrain the radial structure and composition of the core and mantle, and additionally ice, ocean, and gas layer if appropriate. Constraining the parameters of these layers may also inform us about interior dynamics. However, it remains challenging to constrain interior dynamics using interior structure models because structure models are relatively insensitive to the thermal state of a planet. Nevertheless, elucidating interior dynamics remains a key goal in exoplanetology due to its role in determining surface conditions and hence habitability. Thus far, Earth-like habitability can be excluded for super-Earths that are in close proximity to their stars and therefore have high surface temperatures that promote local magma oceans.
accepted book chapter in Handbook of Exoplanets, SpringerLink, 3 Figures, 20 pages (excl. references)
References in corpus (26)
- Mass-Radius Relationships for Solid Exoplanets
- Probabilistic Forecasting of the Masses and Radii of Other Worlds
- On the radiative equilibrium of irradiated planetary atmospheres
- A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
- Can we constrain interior structure of rocky exoplanets from mass and radius measurements?
- Detailed Models of super-Earths: How well can we infer bulk properties?
- Stellar Abundances in the Solar Neighborhood: The Hypatia Catalog
- Exoplanet population inference and the abundance of Earth analogs from noisy, incomplete catalogs
- The Mass of Kepler-93b and The Composition of Terrestrial Planets
- Ocean Planet or Thick Atmosphere: On the Mass-Radius Relationship for Solid Exoplanets with Massive Atmospheres
- A generalized bayesian inference method for constraining the interiors of super Earths and sub-Neptunes
- Geodynamics and Rate of Volcanism on Massive Earth-like Planets
- Habitable Evaporated Cores: Transforming Mini-Neptunes into Super-Earths in the Habitable Zones of M Dwarfs
- Planet formation with envelope enrichment: new insights on planetary diversity
- Atmosphere-interior exchange on hot rocky exoplanets
- Habitability of Terrestrial-Mass Planets in the HZ of M Dwarfs. I. H/He-Dominated Atmospheres
- Direct detection of exoplanets in the 3 -- 10 micron range with E-ELT/METIS
- A 1.9 Earth radius rocky planet and the discovery of a non-transiting planet in the Kepler-20 system
- Planet Hunters VII. Discovery of a New Low-Mass, Low-Density Planet (PH3 c) Orbiting Kepler-289 with Mass Measurements of Two Additional Planets (PH3 b and d)
- The Evolution and Internal Structure of Jupiter and Saturn with Compositional Gradients
- Bayesian analysis of interiors of HD 219134b, Kepler-10b, Kepler-93b, CoRoT-7b, 55 Cnc e, and HD 97658b using stellar abundance proxies
- Interstellar Dust Models and Evolutionary Implications
- Numerical solution of a non-linear conservation law applicable to the interior dynamics of partially molten planets
- What to Expect from Transiting Multiplanet Systems
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- A sub-Neptune and a non-transiting Neptune-mass companion unveiled by ESPRESSO around the bright late-F dwarf HD 5278 (TOI-130)
- Spaceflight from Super-Earths is difficult
- Exploring the habitability and interior composition of exoplanets lying within the extended habitable zone
- Super-Earths in need for Extremly Big Rockets