Breaking Degeneracies in Formation Histories by Measuring Refractory Content in Gas Giants
arXiv:2211.09080 · doi:10.3847/1538-4357/aca614
Abstract
Relating planet formation to atmospheric composition has been a long-standing goal of the planetary science community. So far, most modeling studies have focused on predicting the enrichment of heavy elements and the C/O ratio in giant planet atmospheres. Although this framework provides useful constraints on the potential formation locations of gas giant exoplanets, carbon and oxygen measurements alone are not enough to determine where a given gas giant planet originated. Here, we show that characterizing the abundances of refractory elements (e.g., silicon, iron) can break these degeneracies. Refractory elements are present in the solid phase throughout most of the disk and their atmospheric abundances therefore reflect the solid-to-gas accretion ratio during formation. We introduce a new framework that parameterizes the atmospheric abundances of gas giant exoplanets in the form of three ratios: Si/H, O/Si, and C/Si. Si/H traces the solid-to-gas accretion ratio of a planet and is loosely equivalent to earlier notions of 'metallicity'. For O/Si and C/Si, we present a global picture of their variation with distance and time based on what we know from the solar system meteorites and an updated understanding of the variations of thermal processing within protoplanetary disks. We show that ultra-hot Jupiters are ideal targets for atmospheric characterization studies using this framework, as we can measure the abundances of refractories, oxygen and carbon in the gas phase. Finally, we propose that hot Jupiters with silicate clouds and low water abundances might have accreted their envelopes between the soot line and the water snowline.
accepted to ApJ on Nov 22, 2022. Added DOI and journal ref
References in corpus (70)
- Separating gas-giant and ice-giant planets by halting pebble accretion
- Toward a Deterministic Model of Planetary Formation V. Accumulation Near the Ice Line
- Comparing Jupiter interior structure models to Juno gravity measurements and the role of a dilute core
- The imprint of exoplanet formation history on observable present-day spectra of hot Jupiters
- The ancient heritage of water ice in the solar system
- Planetesimal formation starts at the snow line
- A giant planet undergoing extreme ultraviolet irradiation by its hot massive-star host
- Hints for a Turnover at the Snow Line in the Giant Planet Occurrence Rate
- Chemical enrichment of giant planets and discs due to pebble drift
- Mass-Metallicity Trends in Transiting Exoplanets from Atmospheric Abundances of HO, Na, and K
- Transmission spectral properties of clouds for hot Jupiter exoplanets
- Detection of Fe I in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy
- A consistent retrieval analysis of 10 Hot Jupiters observed in transmission
- Five carbon- and nitrogen-bearing species in a hot giant planet's atmosphere
- Formation of planetary systems by pebble accretion and migration: Growth of gas giants
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- The Complete transmission spectrum of WASP-39b with a precise water constraint
- A water budget dichotomy of rocky protoplanets from Al-heating
- Ice Lines, Planetesimal Composition and Solid Surface Density in the Solar Nebula
- ExoMol molecular line lists V: The ro-vibrational spectra of NaCl and KCl
- Atmospheric Rossiter-McLaughlin effect and transmission spectroscopy of WASP-121b with ESPRESSO
- Planet-forming material in a protoplanetary disc: the interplay between chemical evolution and pebble drift
- Hot Jupiters: Origins, Structure, Atmospheres
- The 13O-rich atmosphere of a young accreting super-Jupiter
- Excess C/O and C/H in outer protoplanetary disk gas
- Titanium oxide and chemical inhomogeneity in the atmosphere of the exoplanet WASP-189b
- PAH chemistry and IR emission from circumstellar disks
- Planetesimal Accretion onto Growing Proto-Gas-Giant Planets
- An Atomic Spectral Survey of WASP-76b: Resolving Chemical Gradients and Asymmetries
- The ARCiS framework for Exoplanet Atmospheres: Modelling Philosophy and Retrieval
- How drifting and evaporating pebbles shape giant planets II: Volatiles and refractories in atmospheres
- Chemical Diversity in Protoplanetary Disks and Its Impact on the Formation History of Giant Planets
- Influence of sub- and super-solar metallicities on the compositions of solid planetary building blocks
- Relative abundance constraints from high-resolution optical transmission spectroscopy of WASP-121b, and a fast model-filtering technique for accelerating retrievals
- An Ultra-Hot Neptune in the Neptune desert
- Revelations on Jupiter's Formation, Evolution and Interior: Challenges from Juno Results
- The origin of the high metallicity of close-in giant exoplanets: Combined effect of the resonant and aerodynamic shepherding
- Convection and Mixing in Giant Planet Evolution
- Destruction of Refractory Carbon in Protoplanetary Disks
- Planet Formation Theory in the Era of ALMA and Kepler: from Pebbles to Exoplanets
- An inventory of atomic species in the atmosphere of WASP-121b using UVES high-resolution spectroscopy
- The spatial distribution of carbon dust in the early solar nebula and the carbon content of planetesimals
- Connecting planet formation and astrochemistry: Refractory carbon depletion leading to super-stellar C/O in giant planetary atmospheres
- Infall of planetesimals onto growing giant planets: onset of runaway gas accretion and metallicity of their gas envelopes
- The GAPS Programme with HARPS-N at TNG. XXXV. Fundamental properties of transiting exoplanet host stars
- Jupiter's heavy-element enrichment expected from formation models
- Isotopic enrichment of forming planetary systems from supernova pollution
- Dome C UltraCarbonaceous Antarctic MicroMeteorites Infrared and Raman fingerprints
- On Atmospheric Retrievals of Exoplanets with Inhomogeneous Terminators
- Capture of Solids by Growing Proto-gas Giants: Effects of Gap Formation and Supply-limited Growth
- Evidence that the Hot Jupiter WASP-77 A b Formed Beyond Its Parent Protoplanetary Disk's H2O Ice Line
- Gemini/GMOS Optical Transmission Spectroscopy of WASP-121b: signs of variability in an ultra-hot Jupiter?
- UV Exoplanet Transmission Spectral Features as Probes of Metals and Rainout
- Mining the Ultra-Hot Skies of HAT-P-70b: Detection of a Profusion of Neutral and Ionized Species
- Heavy-metal Jupiters by major mergers: metallicity vs. mass for giant planets
- Solar Elemental Abundances
- How drifting and evaporating pebbles shape giant planets III: The formation of WASP-77A b and Boötis b
- SimAb: A simple, fast and flexible model to assess the effects of planet formation on the atmospheric composition of gas giants
- The PHOENIX Exoplanet Retrieval Algorithm and Using H Opacity as a Probe in Ultra-hot Jupiters
- System-level fractionation of carbon from disk and planetesimal processing
- Unifying High- and Low-resolution Observations to Constrain the Dayside Atmosphere of KELT-20b/MASCARA-2b
- Measuring Elemental Abundances of JWST Target Stars for Exoplanet Characterization I. FGK Stars
- Constraining the origin of giant exoplanets via elemental abundance measurements
- Implications of Jupiter Inward Gas-Driven Migration for the Inner Solar System
- Understanding the atmospheric properties and chemical composition of the ultra-hot Jupiter HAT-P-7b: III. Changing ionisation and the emergence of an ionosphere
- Super stellar abundances of alkali metals suggest significant migration for Hot Jupiters
- Inside-Out Planet Formation. VII. Astrochemical Models of Protoplanetary Disks and Implications for Planetary Compositions
- A low accretion efficiency of planetesimals formed at planetary gap edges
- The California Legacy Survey II. Occurrence of Giant Planets Beyond the Ice line
- The effect of carbon grain destruction on the chemical structure of protoplanetary disks
Cited by in corpus (39)
- Retrieval survey of metals in six ultra-hot Jupiters: Trends in chemistry, rain-out, ionisation and atmospheric dynamics
- Evidence for Hidden Nearby Companions to Hot Jupiters
- Close-in ice lines and the super-stellar C/O ratio in discs around very low-mass stars
- CRIRES+ and ESPRESSO reveal an atmosphere enriched in volatiles relative to refractories on the ultra-hot Jupiter WASP-121b
- Keck/KPIC Emission Spectroscopy of WASP-33b
- Nitrogen as a Tracer of Giant Planet Formation. I.: A Universal Deep Adiabatic Profile and Semi-analytical Predictions of Disequilibrium Ammonia Abundances in Warm Exoplanetary Atmospheres
- The ESO SupJup Survey III: Confirmation of 13CO in YSES 1 b and Atmospheric Detection of YSES 1 c with CRIRES+
- NIRPS joining HARPS at ESO 3.6 m. On-sky performance and science objectives
- Enriching inner discs and giant planets with heavy elements
- Composition of giant planets: the roles of pebbles and planetesimals
- Are WASP-107-like Systems Consistent with High-eccentricity Migration?
- A sub-solar metallicity on the ultra-short period planet HIP 65Ab
- BOWIE-ALIGN: JWST reveals hints of planetesimal accretion and complex sulphur chemistry in the atmosphere of the misaligned hot Jupiter WASP-15b
- Revising the Giant Planet Mass-Metallicity Relation: Deciphering the Formation Sequence of Giant Planets
- Fresh view of the hot brown dwarf HD 984 B through high-resolution spectroscopy
- Time Resolved Absorption of Six Chemical Species With MAROON-X Points to Strong Drag in the Ultra Hot Jupiter TOI-1518 b
- Atmospheric characterization of the super-Jupiter HIP 99770 b with KPIC
- Tracing the formation and migration history: molecular signatures in the atmosphere of misaligned hot Jupiter WASP-94Ab using JWST NIRSpec/G395H
- Jupiter-like uniform metal enrichment in a system of multiple giant exoplanets
- The compositions of the HR 8799 planets reflect accretion of both solids and metal-enriched gas
- Constraining the formation of WASP-39b using JWST transit spectroscopy
- Planet formation in chemically diverse and evolving discs -- I. Composition of planetary building blocks
- Refractory and Volatile Species in the UV-to-IR Transmission Spectrum of Ultra-hot Jupiter WASP-178b with HST and JWST
- New perspectives on MASCARA-1b: A combined analysis of pre- and post-eclipse emission data using CRIRES+
- PDS 70b Shows Stellar-like Carbon-to-oxygen Ratio
- Strong NUV Refractory Absorption and Dissociated Water in the Hubble Transmission Spectrum of the Ultra Hot Jupiter KELT-20 b
- Evidence of Titanate Clouds in the Day-side Atmosphere of the Ultra-Hot Jupiter WASP-121b
- Chemical composition of planetary hosts: C, N, and -element abundances
- Atmospheric Mass Loss from TOI-1259 A b, a Gas Giant Planet With a White Dwarf Companion
- A Comprehensive Analysis of the Panchromatic Transmission Spectrum of the Hot-Saturn WASP-96 b: Nondetection of Haze, Possible Sodium Limb Asymmetry, Stellar Characterization, and Formation History
- An Early Look at the Performance of IGRINS-2 at Gemini-North with Application to the ultrahot Jupiter, WASP-33 b
- Quantifying thermal water dissociation in the dayside photosphere of WASP-121 b using NIRPS
- First Results from WINERED: Detection of Emission Lines from Neutral Iron and a Combined Set of Trace Species on the Dayside of WASP-189 b
- Assessing robustness and bias in 1D retrievals of 3D Global Circulation Models at high spectral resolution: a WASP-76 b simulation case study in emission
- A Measurement of the Water Abundance in the Atmosphere of the Hot Jupiter WASP-43b with High-resolution Cross-correlation Spectroscopy
- Direct Images of CO2 Absorption in the Atmosphere of a Super-Jupiter: Enhanced Metallicity Suggestive of Formation in a Disk
- Revisiting the atmosphere of HAT-P-70b with CARMENES high-resolution transmission spectroscopy
- JWST-TST High Contrast: First Direct Spectroscopy of GJ 504 b reveals Clouds and Possible Metal Enrichment
- The breaking of cold traps and onset of titanium in ultra-hot Jupiter atmospheres: WASP-189b in context