Magma ocean evolution at arbitrary redox state
arXiv:2411.19137 · doi:10.1029/2024JE008576
Abstract
Interactions between magma oceans and overlying atmospheres on young rocky planets leads to an evolving feedback of outgassing, greenhouse forcing, and mantle melt fraction. Previous studies have predominantly focused on the solidification of oxidized Earth-similar planets, but the diversity in mean density and irradiation observed in the low-mass exoplanet census motivate exploration of strongly varying geochemical scenarios. We aim to explore how variable redox properties alter the duration of magma ocean solidification, the equilibrium thermodynamic state, melt fraction of the mantle, and atmospheric composition. We develop a 1D coupled interior-atmosphere model that can simulate the time-evolution of lava planets. This is applied across a grid of fixed redox states, orbital separations, hydrogen endowments, and C/H ratios around a Sun-like star. The composition of these atmospheres is highly variable before and during solidification. The evolutionary path of an Earth-like planet at 1 AU ranges between permanent magma ocean states and solidification within 1 Myr. Recently solidified planets typically host H2O- or H2-dominated atmospheres in the absence of escape. Orbital separation is the primary factor determining magma ocean evolution, followed by the total hydrogen endowment, mantle oxygen fugacity, and finally the planet's C/H ratio. Collisional absorption by H2 induces a greenhouse effect which can prevent or stall magma ocean solidification. Through this effect, as well as the outgassing of other volatiles, geochemical properties exert significant control over the fate of magma oceans on rocky planets.
Accepted for publication in JGR: Planets
References in corpus (49)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Habitable Zones Around Main-Sequence Stars: New Estimates
- ExoMol molecular line lists XXX: a complete high-accuracy line list for water
- ExoMol line lists IV: The rotation-vibration spectrum of methane up to 1500 K
- Improved angular momentum evolution model for solar-like stars
- Hydrogen Greenhouse Planets Beyond the Habitable Zone
- The active lives of stars: a complete description of rotation and XUV evolution of F, G, K, and M dwarfs
- ExoMol line lists -- XXXIX. Ro-vibrational molecular line list for CO
- No thick carbon dioxide atmosphere on the rocky exoplanet TRAPPIST-1 c
- The radius discrepancy in low mass stars: single vs. binaries
- Partition functions and equilibrium constants for diatomic molecules and atoms of astrophysical interest
- Day-night cloud asymmetry prevents early oceans on Venus but not on Earth
- Oxygen fugacities of extrasolar rocks: Evidence for an Earth-like geochemistry of exoplanets
- The Elemental Abundances (with Uncertainties) of the Most Earth-like Planet
- A Volcanic Hydrogen Habitable Zone
- An Analytic Radiative-Convective Model for Planetary Atmospheres
- Retention of water in terrestrial magma oceans and carbon-rich early atmospheres
- Atmospheres of Rocky Exoplanets
- Vertically resolved magma ocean-protoatmosphere evolution: H, HO, CO, CH, CO, O, and N as primary absorbers
- The runaway greenhouse radius inflation effect - An observational diagnostic to probe water on Earth-size planets and test the Habitable Zone concept
- Distinguishing oceans of water from magma on mini-Neptune K2-18b
- Scaling laws for the geometry of an impact-induced magma ocean
- Detection of Ongoing Mass Loss from HD 63433c, a Young Mini Neptune
- The spectrum of N from 4,500 to 15,700 cm revisited with PGOPHER
- Solubility of water in peridotite liquids and the prevalence of steam atmospheres on rocky planets
- Lava Worlds: From Early Earth to Exoplanets
- To cool is to keep: Residual H/He atmospheres of super-Earths and sub-Neptunes
- Magma ocean evolution of the TRAPPIST-1 planets
- Polluted White Dwarfs Reveal Exotic Mantle Rock Types on Exoplanets in our Solar Neighborhood
- Tidal dissipation and eccentricity pumping: Implications for the depth of the secondary eclipse of 55 Cnc e
- A cool runaway greenhouse without surface magma ocean
- Oxygen False Positives on Habitable Zone Planets Around Sun-Like Stars
- Radioactive heat production of six geologically important nuclides
- Super-Earths and Earth-like Exoplanets
- The distribution of volatile elements during rocky planet formation
- Numerical solution of a non-linear conservation law applicable to the interior dynamics of partially molten planets
- Implications of atmospheric nondetections for Trappist-1 inner planets on atmospheric retention prospects for outer planets
- VapoRock: Thermodynamics of vaporized silicate melts for modeling volcanic outgassing and magma ocean atmospheres
- Formation of aqua planets with water of nebular origin: Effects of water enrichment on the structure and mass of captured atmospheres of terrestrial planets
- Exoplanet Volatile Carbon Content as a Natural Pathway for Haze Formation
- Interior dynamics of super-Earth 55 Cancri e
- Observability of silicates in volatile atmospheres of super-Earths and sub-Neptunes
- Bioverse: The Habitable Zone Inner Edge Discontinuity as an Imprint of Runaway Greenhouse Climates on Exoplanet Demographics
- Reduced late bombardment on rocky exoplanets around M-dwarfs
- A mineralogical reason why all exoplanets cannot be equally oxidising
- Interior Controls on the Habitability of Rocky Planets
- Atmosphere Loss in Oblique Super-Earth Impacts
- Temperature-chemistry coupling in the evolution of gas giant atmospheres driven by stellar flares
- Humid Evolution of Haze in the Atmosphere of Super-Earths in the Habitable Zone
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- Magma ocean interactions can explain JWST observations of the sub-Neptune TOI-270 d
- Constraining exoplanet interiors using observations of their atmospheres
- Self-limited tidal heating and prolonged magma oceans in the L 98-59 system
- Redefining interiors and envelopes: hydrogen-silicate miscibility and its consequences for the structure and evolution of sub-Neptunes
- Volatile-rich evolution of molten super-Earth L 98-59 d
- Absence of a Runaway Greenhouse Limit on Lava Planets
- AGNI: A radiative-convective model for lava planet atmospheres
- Coupled Thermal-Chemical Evolution Models of Sub-Neptunes Reveal Atmospheric Signatures of Their Formation Location
- Exo-Geoscience Perspectives Beyond Habitability
- The atmospheres of rocky exoplanets III. Using atmospheric spectra to constrain surface rock composition
- Evolution and Observable Properties of Rocky Planet Atmospheres
- Bioverse: Potentially Observable Exoplanet Biosignature Patterns Under the UV Threshold Hypothesis for the Origin of Life