A water budget dichotomy of rocky protoplanets from Al-heating
arXiv:1902.04026 · doi:10.1038/s41550-018-0688-5
Abstract
In contrast to the water-poor inner solar system planets, stochasticity during planetary formation and order of magnitude deviations in exoplanet volatile contents suggest that rocky worlds engulfed in thick volatile ice layers are the dominant family of terrestrial analogues among the extrasolar planet population. However, the distribution of compositionally Earth-like planets remains insufficiently constrained, and it is not clear whether the solar system is a statistical outlier or can be explained by more general planetary formation processes. Here we employ numerical models of planet formation, evolution, and interior structure, to show that a planet's bulk water fraction and radius are anti-correlated with initial Al levels in the planetesimal-based accretion framework. The heat generated by this short-lived radionuclide rapidly dehydrates planetesimals prior to accretion onto larger protoplanets and yields a system-wide correlation of planet bulk abundances, which, for instance, can explain the lack of a clear orbital trend in the water budgets of the TRAPPIST-1 planets. Qualitatively, our models suggest two main scenarios of planetary systems' formation: high-Al systems, like our solar system, form small, water-depleted planets, whereas those devoid of Al predominantly form ocean worlds, where the mean planet radii between both scenarios deviate by up to about 10%.
Preprint version; free-to-read journal version at https://rdcu.be/bmdlw; blog article at https://t.co/p6SValG1ip
References in corpus (21)
- Mass-Radius Relationships for Solid Exoplanets
- On the radiative equilibrium of irradiated planetary atmospheres
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
- Origin of water in the inner Solar System: Planetesimals scattered inward during Jupiter and Saturn's rapid gas accretion
- How to Characterize Habitable Worlds and Signs of Life
- Atmospheric Mass Loss During Planet Formation: The Importance of Planetesimal Impacts
- Kepler Multi-Planet Systems Exhibit Unexpected Intra-system Uniformity in Mass and Radius
- Global Models of Planet Formation and Evolution
- Volatile Delivery to Planets from Water-rich Planetesimals around Low Mass Stars
- Temporal evolution of the high-energy irradiation and water content of TRAPPIST-1 exoplanets
- Formation and composition of planets around very low mass stars
- Impact splash chondrule formation during planetesimal recycling
- The formation of the solar system
- Triggered Star Formation Inside the Shell of a Wolf-Rayet Bubble as the origin of the Solar System
- Isotopic enrichment of forming planetary systems from supernova pollution
- The first 40 million years of circumstellar disk evolution: the signature of terrestrial planet formation
- Transfer, loss and physical processing of water in hit-and-run collisions of planetary embryos
- Reconstructing the size distribution of the primordial Main Belt
- Distributions of Short-Lived Radioactive Nuclei Produced by Young Embedded Stellar Clusters
- Was Planet 9 captured in the Sun's natal star-forming region?
- Supernova enrichment of planetary systems in low-mass star clusters
Cited by in corpus (72)
- Bifurcation of planetary building blocks during Solar System formation
- The New Generation Planetary Population Synthesis (NGPPS). IV. Planetary systems around low-mass stars
- ALMA and ROSINA detections of phosphorus-bearing molecules: the interstellar thread between star-forming regions and comets
- Atmospheres of Rocky Exoplanets
- Vertically resolved magma ocean-protoatmosphere evolution: H, HO, CO, CH, CO, O, and N as primary absorbers
- Rocky super-Earths or waterworlds: the interplay of planet migration, pebble accretion and disc evolution
- Breaking Degeneracies in Formation Histories by Measuring Refractory Content in Gas Giants
- A Tale of Planet Formation: From Dust to Planets
- Fingerprints of giant planets in the composition of solar twins
- Jupiter's heavy-element enrichment expected from formation models
- The GUAPOS project II. A comprehensive study of peptide-like bond molecules
- Lava Worlds: From Early Earth to Exoplanets
- Redox hysteresis of super-Earth exoplanets from magma ocean circulation
- Accretion of the earliest inner solar system planetesimals beyond the water-snowline
- Growth and evolution of secondary volcanic atmospheres: I. Identifying the geological character of hot rocky planets
- Proplyds in the Flame Nebula NGC 2024
- The dynamics of the TRAPPIST-1 system in the context of its formation
- Super-Earths and Earth-like Exoplanets
- The distribution of volatile elements during rocky planet formation
- Evolution of the Water Snow Line in Magnetically Accreting Protoplanetary Disks
- A roadmap for the atmospheric characterization of terrestrial exoplanets with JWST
- Setting the Stage: Planet formation and Volatile Delivery
- Stochastic Chemical Evolution of Radioactive Isotopes with a Monte Carlo Approach
- A Solar System formation analogue in the Ophiuchus star-forming complex
- Anatomy of rocky planets formed by rapid pebble accretion I. How icy pebbles determine the core fraction and FeO contents
- Internal or external magma oceans in the earliest protoplanets -- perspectives from nitrogen and carbon fractionation
- Realistic collisional water transport during terrestrial planet formation: Self-consistent modeling by an N-body--SPH hybrid code
- System-level fractionation of carbon from disk and planetesimal processing
- External photoevaporation of protoplanetary discs: does location matter?
- Exoplanet Volatile Carbon Content as a Natural Pathway for Haze Formation
- First interferometric study of enhanced N-fractionation in NH: the high-mass star-forming region IRAS 05358+3543
- Warm millimetre dust in protoplanetary discs near massive stars
- Galactic 26Al traces metal loss through hot chimneys
- Reduced late bombardment on rocky exoplanets around M-dwarfs
- Bioverse: The Habitable Zone Inner Edge Discontinuity as an Imprint of Runaway Greenhouse Climates on Exoplanet Demographics
- Far and extreme ultraviolet radiation fields and consequent disc destruction in star-forming regions
- How the origin of stars in the Galaxy impacts the composition of planetary building blocks
- Potential long-term habitable conditions on planets with primordial H-He atmospheres
- Ariel Planetary Interiors White Paper
- Distribution and kinematics of 26Al in the Galactic disc
- Prevalence of short-lived radioactive isotopes across exoplanetary systems inferred from polluted white dwarfs
- The Roles of Dust Growth in the Temperature Evolution and Snow Line Migration in Magnetically Accreting Protoplanetary Disks
- Observational constraints on the likelihood of Al in planet-forming environments
- Modification of icy planetesimals by early thermal evolution and collisions: Constraints for formation time and initial size of comets and small KBOs
- First survey of HCNH in high-mass star-forming cloud cores
- Illuminating the Tadpole's metamorphosis I: MUSE observations of a small globule in a sea of ionizing photons
- The Demographics of Exoplanets
- The Cosmic Shoreline Revisited: A Metric for Atmospheric Retention Informed by Hydrodynamic Escape
- Constraining exoplanet interiors using observations of their atmospheres
- Planetary mass-radius relations across the galaxy
- Atacama Large Aperture Submillimeter Telescope (AtLAST) Science: Our Galaxy
- On the Habitable Lifetime of Terrestrial Worlds with High Radionuclide Abundances
- No nitrogen fractionation on 600 au scale in the Sun progenitor analogue OMC-2 FIR4
- Presolar grains
- Short-lived radioisotope enrichment in star-forming regions from stellar winds and supernovae
- Water versus land on temperate rocky planets
- ALMA-IRDC II. First high-angular resolution measurements of the 14N/15N ratio in a large sample of infrared-dark cloud cores
- Unlocking planetesimal magnetic field histories: a refined, versatile model for thermal evolution and dynamo generation
- Strong NUV Refractory Absorption and Dissociated Water in the Hubble Transmission Spectrum of the Ultra Hot Jupiter KELT-20 b
- Possible Evidence for the Presence of Volatiles on the Warm Super-Earth TOI-270 b
- Theoretical Distributions of Short-Lived Radionuclides for Star Formation in Molecular Clouds
- Geoastronomy: Rocky planets as the Lavosier-Lomonosov Bridge from the non-living to the living world
- Chasing Nomadic Worlds: A New Class of Deep Space Missions
- An upper limit for the growth of inner planets?
- A pebble accretion model for the formation of the terrestrial planets in the Solar System
- Long-term evolution of the temperature structure in magnetized protoplanetary disks and its implication for the dichotomy of planetary composition
- Cosmic-Ray Bath in a Past Supernova Gives Birth to Earth-Like Planets
- Self-consistent Conditions for Al Injection into Protosolar Disk from a Nearby Supernova
- Earth's carbon deficit caused by early loss through irreversible sublimation
- Hidden water in magma ocean exoplanets
- The cosmic journey of dust grains -- from nucleation to planetary system
- Radioactive Planet Formation