The Interior Structure, Composition, and Evolution of Giant Planets
arXiv:0912.0533 · doi:10.1007/s11214-009-9582-x
Abstract
We discuss our current understanding of the interior structure and thermal evolution of giant planets. This includes the gas giants, such as Jupiter and Saturn, that are primarily composed of hydrogen and helium, as well as the "ice giants," such as Uranus and Neptune, which are primarily composed of elements heavier than H/He. The effect of different hydrogen equations of state (including new first-principles computations) on Jupiter's core mass and heavy element distribution is detailed. This variety of the hydrogen equations of state translate into an uncertainty in Jupiter's core mass of 18 M_Earth. For Uranus and Neptune we find deep envelope metallicities up to 0.95, perhaps indicating the existence of an eroded core, as also supported by their low luminosity. We discuss the results of simple cooling models of our solar system's planets, and show that more complex thermal evolution models may be necessary to understand their cooling history. We review how measurements of the masses and radii of the ~50 transiting extrasolar giant planets are changing our understanding of giant planets. In particular a fraction of these planets appear to be larger than can be accommodated by standard models of planetary contraction. We review the proposed explanations for the radii of these planets. We also discuss very young giant planets, which are being directly imaged with ground- and space-based telescopes.
Space Science Reviews, in press. Review based on work presented at the ISSI Workshop "Planetary Magnetism," in Bern, Switzerland, 1-5 September 2008
References in corpus (19)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- Atmospheric Escape from Hot Jupiters
- On the Luminosity of Young Jupiters
- Tidal Evolution of Close-in Extra-Solar Planets
- Ab initio Equation of State data for hydrogen, helium, and water and the internal structure of Jupiter
- A Massive Core in Jupiter Predicted From First-Principles Simulations
- Constraints on Deep-seated Zonal Winds Inside Jupiter and Saturn
- Hydrogen-Helium Mixtures in the Interiors of Giant Planets
- Heat transport in giant (exo)planets: a new perspective
- Tidal Heating of Extra-Solar Planets
- Falling Transiting Extrasolar Giant Planets
- Phase separation in hydrogen-helium mixtures at Mbar pressures
- Inflating and Deflating Hot Jupiters: Coupled Tidal and Thermal Evolution of Known Transiting Planets
- Tidal dissipation within hot Jupiters: a new appraisal
- On the Origin of HD149026b
- Coupled Evolution with Tides of the Radius and Orbit of Transiting Giant Planets: General Results
- The composition of transiting giant extrasolar planets
- Diurnal Thermal Tides in a Non-synchronized Hot Jupiter
Cited by in corpus (159)
- The Mass-Metallicity Relation for Giant Planets
- Comparing Jupiter interior structure models to Juno gravity measurements and the role of a dilute core
- Imaging Extrasolar Giant Planets
- Improved spectroscopic parameters for transiting planet hosts
- Characterization of exoplanets from their formation I: Models of combined planet formation and evolution
- KELT-1b: A Strongly Irradiated, Highly Inflated, Short Period, 27 Jupiter-mass Companion Transiting a mid-F Star
- Characterization of exoplanets from their formation II: The planetary mass-radius relationship
- A new vision on giant planet interiors: the impact of double diffusive convection
- An All-Sky Catalog of Bright M Dwarfs
- The Heavy Element Masses of Extrasolar Giant Planets, Revealed
- Lack of Inflated Radii for Kepler Giant Planet Candidates Receiving Modest Stellar Irradiation
- New indication for a dichotomy in the interior structure of Uranus and Neptune from the application of modified shape and rotation data
- Near-Infrared Spectroscopy of the Extrasolar Planet HR 8799 b
- Exoplanetary Atmospheres - Chemistry, Formation Conditions, and Habitability
- Jupiter models with improved ab initio hydrogen EOS (H-REOS.2)
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- Kepler 18-b, c, and d: A System Of Three Planets Confirmed by Transit Timing Variations, Lightcurve Validation, Spitzer Photometry and Radial Velocity Measurements
- Electronic transport coefficients from ab initio simulations and application to dense liquid hydrogen
- The Gaia-Kepler Stellar Properties Catalog. II. Planet Radius Demographics as a Function of Stellar Mass and Age
- Ab Initio Equation of State for Hydrogen-Helium Mixtures with Recalibration of the Giant-Planet Mass-Radius Relation
- Formation of planets by tidal downsizing of giant planet embryos
- Born Dry in the Photo-Evaporation Desert: Kepler's Ultra-Short-Period Planets Formed Water-Poor
- Probing the interiors of the ice giants: Shock compression of water to 700 GPa and 3.8 g/ccm
- Elemental abundance differences in the 16 Cygni binary system: a signature of gas giant planet formation?
- The Effects of Irradiation on Hot Jovian Atmospheres: Heat Redistribution and Energy Dissipation
- Evolution of Ohmically Heated Hot Jupiters
- Advection of potential temperature in the atmosphere of irradiated exoplanets: a robust mechanism to explain radius inflation
- Saturn Ring Seismology: Evidence for Stable Stratification in the Deep Interior of Saturn
- Self-Consistent Model Atmospheres and the Cooling of the Solar System's Giant Planets
- Gas Giant Formation with Small Cores Triggered by Envelope Pollution by Icy Planetesimals
- Grain sedimentation inside giant planet embryos
- WASP-52b, WASP-58b, WASP-59b, and WASP-60b: four new transiting close-in giant planets
- Connecting Giant Planet Atmosphere and Interior Modeling: Constraints on Atmospheric Metal Enrichment
- Hot Jupiter Magnetospheres
- WASP-39b: a highly inflated Saturn-mass planet orbiting a late G-type star
- Uranus evolution models with simple thermal boundary layers
- Atmospheric Dynamics of Hot Giant Planets and Brown Dwarfs
- X-Ray Thomson scattering without the Chihara decomposition
- Uranus and Neptune: Origin, Evolution and Internal Structure
- Scientific rationale for Uranus and Neptune in situ explorations
- The Transit Light Curve project. XIV. Confirmation of Anomalous Radii for the Exoplanets TrES-4b, HAT-P-3b, and WASP-12b
- Jupiter internal structure: the effect of different equations of state
- From planetesimals to planets: volatile molecules
- Factors Affecting the Radii of Close-in Transiting Exoplanets
- The PTF Orion Project: a Possible Planet Transiting a T-Tauri Star
- Evidence for a spectroscopic direct detection of reflected light from 51 Peg b
- A warm Jupiter-sized planet transiting the pre-main sequence star V1298 Tau
- Jupiter's formation and its primordial internal structure
- Formation, Orbital and Internal Evolutions of Young Planetary Systems
- Tidally-driven Roche-Lobe Overflow of Hot Jupiters with MESA
- The Evolution and Internal Structure of Jupiter and Saturn with Compositional Gradients
- Viscoelastic Tidal Dissipation in Giant Planets and Formation of Hot Jupiters Through High-Eccentricity Migration
- Extended Heat Deposition in Hot Jupiters: Application to Ohmic Heating
- Giant Planets
- Discovery and Atmospheric Characterization of Giant Planet Kepler-12b: An Inflated Radius Outlier
- Investigating hot-Jupiter inflated radii with hierarchical Bayesian modelling
- Idealised simulations of the deep atmosphere of hot jupiters: Deep, hot, adiabats as a robust solution to the radius inflation problem
- WASP-78b and WASP-79b: Two highly-bloated hot Jupiter-mass exoplanets orbiting F-type stars in Eridanus
- The Structure of Exoplanets
- Saturn's fast spin determined from its gravitational field and oblateness
- Hot-Jupiter Inflation due to Deep Energy Deposition
- Scientific rationale of Saturn's in situ exploration
- The Impact of Recent Advances in Laboratory Astrophysics on our Understanding of the Cosmos
- Measuring Jupiter's water abundance by Juno: the link between interior and formation models
- Evaporation of dark matter from celestial bodies
- Effect of Non-Adiabatic Thermal Profiles on the Inferred Compositions of Uranus and Neptune
- Diverse outcomes of planet formation and composition around low-mass stars and brown dwarfs
- Solar System Physics for Exoplanet Research
- The mass-radius relation of exoplanets, revisited
- The New Generation Planetary Population Synthesis (NGPPS). V. Predetermination of planet types in global core accretion models
- Dynamical Constraints on the Core Mass of Hot Jupiter HAT-P-13b
- Evolution of atmospheric escape in close-in giant planets and their associated Ly and H transit predictions
- The Interiors of Uranus and Neptune: Current Understanding and Open Questions
- Tidal Decay and Stable Roche-Lobe Overflow of Short-Period Gaseous Exoplanets
- Investigating the physical properties of transiting hot Jupiters with the 1.5-m Kuiper Telescope
- Probing exoplanet clouds with optical phase curves
- Astrometry with Hubble Space Telescope Fine Guidance Sensors - A Review
- Low- and high-order gravitational harmonics of rigidly rotating Jupiter
- Superionic silica-water and silica-hydrogen compounds under high pressure
- Interior structure models of GJ 436b
- Constraining the entropy of formation from young transiting planets
- The TESS-Keck Survey I: A Warm Sub-Saturn-mass Planet and a Caution about Stray Light in TESS Cameras
- Theoretical vs. observational uncertainties: composition of giant exoplanets
- Mass and Eccentricity Constraints in the WASP-47 Planetary System from a Simultaneous Analysis of Radial Velocities & Transit Timing Variations
- What do we Really Know about Uranus and Neptune?
- Interior Structure of Water Planets: Implications for their dynamo source regions
- In hot water: effects of temperature-dependent interiors on the radii of water-rich super-Earths
- Unusual chemistry of the C-H-N-O system under pressure and implications for giant planets
- Transmission spectroscopy for the warm sub-Neptune HD3167c: evidence for molecular absorption and a possible high metallicity atmosphere
- A feature-rich transmission spectrum for WASP-127b
- Particle accretion onto planets in discs with hydrodynamic turbulence
- Synthetic Evolution Tracks of Giant Planets
- Exoplanet X-ray irradiation and evaporation rates with eROSITA
- In Situ Formation of Icy Moons of Uranus and Neptune
- The Fundamental Connections Between the Solar System and Exoplanetary Science
- Evolution of Jupiter and Saturn with helium rain
- pt5m - a 0.5m robotic telescope on La Palma
- Stellar Magnetic Fields as a Heating Source for Extrasolar Giant Planets
- The Hunt for Planet Nine: Atmosphere, Spectra, Evolution, and Detectability
- Growth of Jupiter: Enhancement of Core Accretion by a Voluminous Low-Mass Envelope
- Heat and charge transport in HO at ice-giant conditions from ab initio molecular dynamics simulations
- Young Exoplanet Transit Initiative (YETI)
- Acceleration of Cooling of Ice Giants by Condensation in Early Atmospheres
- On the structure and evolution of planets and their host stars effects of various heating mechanisms on the size of giant gas planets
- NGTS-2b: An inflated hot-Jupiter transiting a bright F-dwarf
- WASP-54b, WASP-56b and WASP-57b: Three new sub-Jupiter mass planets from SuperWASP
- Ohmic Dissipation in Mini-Neptunes
- Information in the Reflected Light Spectra of Widely Separated Giant Exoplanets
- Sculpting the sub-Saturn Occurrence Rate via Atmospheric Mass Loss
- Towards a new era in giant exoplanet characterisation
- The Role of Drag in the Energetics of Strongly Forced Exoplanet Atmospheres
- The Effect of Clouds as an Additional Opacity Source on the Inferred Metallicity of Giant Exoplanets
- Tentative Evidence for Water Vapor in the Atmosphere of the Neptune-Size Exoplanet HD 106315 c
- Discovery of WASP-65b and WASP-75b: Two Hot Jupiters Without Highly Inflated Radii
- Revealing the Complex Transport Behaviors in Warm Dense Hydrogen by Including Nuclear Quantum Effects
- Planet Mass and Metallicity: The Exoplanets and Solar System Connection
- Wave propagation in semi-convective regions of giant planets
- Hydrogen and deuterium in shock wave experiments, ab initio simulations and chemical picture modeling
- K2-287b: an Eccentric Warm Saturn transiting a G-dwarf
- Seismology of Giant Planets
- A HARDCORE model for constraining an exoplanet's core size
- TTV-determined Masses for Warm Jupiters and their Close Planetary Companions
- Hot-Jupiter Core Mass from Roche-lobe Overflow
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- Blackbody Radiation from Isolated Neptunes
- WASP-135b: a highly irradiated, inflated hot Jupiter orbiting a G5V star
- Principal deuterium Hugoniot via Quantum Monte Carlo and -learning
- Atmospheric mass loss of extrasolar planets orbiting magnetically active host stars
- Magnetic Field Evolution of Hot Exoplanets
- HAT-P-58b -- HAT-P-64b: Seven Planets Transiting Bright Stars
- Atmospheric Characterization via Broadband Color Filters on the PLAnetary Transits and Oscillations of stars (PLATO) Mission
- Forward and Inverse Modeling for Jovian Seismology
- Evidence of Radius Inflation in Radiative GCM Models of WASP-76b due to the Advection of Potential Temperature
- Dynamics of the envelope of a rapidly rotating star or giant planet in gravitational contraction
- Evolution of helium triplet transits of close-in gas giants orbiting K-dwarfs
- Random Models for Exploring Planet Compositions I: Uranus as an Example
- Orbital period modulation in hot Jupiter systems
- Internal Structure of Giant and Icy Planets: Importance of Heavy Elements and Mixing
- Multiplexing Precision RVs: Searching for Close in Gas Giants in Open Clusters
- Accelerated free energy estimation in ab initio path integral Monte Carlo simulations
- Formation of Giant Planets
- Tidal dissipation in stratified and semi-convective regions of giant planets
- On the Formation and Properties of Fluid Shocks and Collisionless Shock Waves in Astrophysical Plasmas
- Influences of internal forcing on atmospheric circulations of irradiated giant planets
- Helium escape signatures are generally strongest during younger ages but this age dependence is lost in the diversity of observed exoplanets
- The Impact of Irradiation on the Radius and Thermal Evolution of Transiting Brown Dwarfs
- Confirmation of four hot Jupiters detected by TESS using follow-up spectroscopy from MaHPS at Wendelstein together with NEID and TRES
- Giant Outer Transiting Exoplanet Mass (GOT 'EM) Survey. VI: Confirmation of a Long-Period Giant Planet Discovered with a Single TESS Transit
- Evidence for a Nonzero Eccentricity Superpuff Exoplanet WASP-107 b Using JWST Occultation Observation
- Forecasting the detectability of known radial velocity planets with the upcoming CHEOPS mission
- Exploring the habitability and interior composition of exoplanets lying within the extended habitable zone
- Measurement of the Electric Dipole Moment of AlCl by Stark Level Spectroscopy
- Nuclear fusion in the deuterated cores of inflated hot Jupiters
- Stellar Wind -- Magnetosphere Interactions in Hot Jupiters
- Possible in situ formation of Uranus and Neptune via Pebble Accretion
- Assessing the contribution of Centaur impacts to ice giant luminosities
- Resizing the giants: How modelling adiabatic interiors impacts predicted planetary radii
- Probing habitable regions with SRG/eROSITA
- The effects of stellar activity cycles on planetary atmospheric escape and the HeI 1083nm transit signature