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From stars to diverse mantles, melts, crusts and atmospheres of rocky exoplanets

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arxiv 2404.15427 v1 pith:VF5POS7F submitted 2024-04-23 astro-ph.EP astro-ph.SRphysics.geo-ph

From stars to diverse mantles, melts, crusts and atmospheres of rocky exoplanets

classification astro-ph.EP astro-ph.SRphysics.geo-ph
keywords exoplanetsrockysectioncompositionalcrustscompositionsexpectedpredictions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This review is focused on describing the logic by which we make predictions of exoplanetary compositions and mineralogies, and how these processes could lead to compositional diversity among rocky exoplanets. We use these predictions to determine the sensitivity of present-day and future observations to detecting compositional differences between rocky exoplanets and the four terrestrial planets. First, we review data on stellar abundances and infer how changes in composition may manifest themselves in the expected bulk compositions of rocky exoplanets (section 2). Converting this information in mass-radius relationships requires calculation of the stable mineral assemblages at a given temperature-pressure-composition (T-P-X), an exercise we describe in section 3. Should the planet be hot enough to engender partial melting of the mantle, then these liquids are likely to rise to the surface and erupt to form planetary crusts; the possible compositional and mineralogical variability of which we examine in section 4. Finally, the expected spectroscopic responses of such crusts are examined in section 5.

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Cited by 2 Pith papers

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  1. Characterizing the oxidation state of rocky exoplanets with the Large Interferometer for Exoplanets (LIFE)

    astro-ph.EP 2026-07 conditional novelty 5.5

    LIFE baseline mid-IR observations of Earth-sized planets at 10 pc can retrieve CO2, CH4, and NH3 well enough to distinguish mantle redox states from IW-6 to IW+6 under the paper's modeling assumptions.

  2. Sensitivity of Dry Lava Planet Atmospheric Emission Spectra to Changes in Lava Compositions

    astro-ph.EP 2026-04 unverdicted novelty 5.0

    Simulations indicate that order-of-magnitude changes in TiO2 and SiO2 abundances in lava melts produce distinguishable TiO, SiO, and SiO2 features in dry lava planet emission spectra, potentially observable with 12 JW...