Debris from terrestrial planet formation: the Moon-forming collision
arXiv:1206.4190 · doi:10.1111/j.1365-2966.2012.21546.x
Abstract
We study the evolution of debris created in the giant impacts expected during the final stages of terrestrial planet formation. The starting point is the debris created in a simulation of the Moon-forming impact. The dynamical evolution is followed for 10 Myr including the effects of Earth, Venus, Mars and Jupiter. The spatial distribution evolves from a clump in the first few months to an asymmetric ring for the first 10 kyr and finally becoming an axisymmetric ring by about 1 Myr after the impact. By 10 Myr after the impact 20% of the particles have been accreted onto Earth and 17% onto Venus, with 8% ejected by Jupiter and other bodies playing minor roles. However, the fate of the debris also depends strongly on how fast it is collisionally depleted, which depends on the poorly constrained size distribution of the impact debris. Assuming that the debris is made up of 30% by mass mm-cm-sized vapour condensates and 70% boulders up to 500 km, we find that the condensates deplete rapidly on ~1000 yr timescales, whereas the boulders deplete predominantly dynamically. By considering the luminosity of dust produced in collisions within the boulder-debris distribution we find that the Moon-forming impact would have been readily detectable around other stars in Spitzer 24 micron surveys for around 25 Myr after the impact, with levels of emission comparable to many known hot dust systems. The vapour condensates meanwhile produce a short-lived, optically thick, spike of emission. We use these surveys to make an estimate of the fraction of stars that form terrestrial planets, F_TPF. Since current terrestrial planet formation models invoke multiple giant impacts, the low fraction of 10-100 Myr stars found to have warm (~150 K) dust implies that F_TPF ~<10%.
23 pages, 19 figures (14 colour), 1 table. Accepted in MNRAS
References in corpus (11)
- The Occurrence and Mass Distribution of Close-in Super-Earths, Neptunes, and Jupiters
- Debris disks around Sun-like stars
- Formation and Evolution of Planetary Systems (FEPS): Properties of Debris Dust around Solar-type Stars
- New Debris Disks Around Nearby Main Sequence Stars: Impact on The Direct Detection of Planets
- Abundant Circumstellar Silica Dust and SiO Gas Created by a Giant Hypervelocity Collision in the ~12 Myr HD172555 System
- Collisional Stripping and Disruption of Super-Earths
- Spitzer/MIPS Observations of Stars in the Beta Pictoris Moving Group
- On the Nature of the Dust in the Debris Disk Around HD69830
- Spitzer 24 Micron Observations of Open Cluster IC 2391 and Debris Disk Evolution of FGK Stars
- Circumstellar Dust Created by Terrestrial Planet Formation in HD 113766
- Spitzer observations of the Hyades: Circumstellar debris disks at 625 Myr of age
Cited by in corpus (82)
- Planet Hunters X. KIC 8462852 - Where's the Flux?
- Molecular Gas Clumps from the Destruction of Icy Bodies in the Pictoris Debris Disk
- STIS Coronagraphic Imaging of Fomalhaut: Main Belt Structure and the Orbit of Fomalhaut b
- The Atmospheres of Earth-like Planets after Giant Impact Events
- Debris from giant impacts between planetary embryos at large orbital radii
- A near-infrared interferometric survey of debris disc stars. III. First statistics based on 42 stars observed with CHARA/FLUOR
- The structure of terrestrial bodies: Impact heating, corotation limits and synestias
- Large Impacts around a Solar Analog Star in the Era of Terrestrial Planet Formation
- The bright end of the exo-Zodi luminosity function: Disk evolution and implications for exo-Earth detectability
- Five steps in the evolution from protoplanetary to debris disk
- Scattering of small bodies by planets: a potential origin for exozodiacal dust ?
- Revealing Asymmetries in the HD 181327 Debris Disk: A Recent Massive Collision or ISM Warping
- Planetesimal driven migration as an explanation for observations of high levels of warm, exozodiacal dust
- Warm Debris Disks Produced by Giant Impacts During Terrestrial Planet Formation
- A Self-Consistent Model of the Circumstellar Debris Created by a Giant Hypervelocity Impact in the HD172555 System
- Bridging the gap between protoplanetary and debris disks: separate evolution of millimeter and micrometer-sized dust
- Planetary Collisions outside the Solar System: Time Domain Characterization of Extreme Debris Disks
- How to design a planetary system for different scattering outcomes: giant impact sweet spot, maximising exocomets, scattered disks
- Dynamical and collisional constraints on a stochastic late veneer on the terrestrial planets
- The short-lived production of exozodiacal dust in the aftermath of a dynamical instability in planetary systems
- Solar System Physics for Exoplanet Research
- LIDT-DD: A new self-consistent debris disc model including radiation pressure and coupling collisional and dynamical evolution
- Chemical Diversity of Super-Earths As a Consequence of Formation
- HD 172555: detection of 63 microns [OI] emission in a debris disc
- Eight billion asteroids in the Oort cloud
- Extreme Debris Disk Variability -- Exploring the Diverse Outcomes of Large Asteroid Impacts During the Era of Terrestrial Planet Formation
- Ejection of rocky and icy material from binary star systems: Implications for the origin and composition of 1I/`Oumuamua
- Ejection of iron-bearing giant-impact fragments and the dynamical and geochemical influence of the fragment re-accretion
- Realistic On-the-fly Outcomes of Planetary Collisions II: Bringing Machine Learning to N-body Simulations
- Earth-like Habitats in Planetary Systems
- Exo-zodi modelling for the Large Binocular Telescope Interferometer
- Spatially resolved imaging of the two-component eta Crv debris disk with Herschel
- Variations on Debris Disks III. Collisional Cascades and Giant Impacts in the Terrestrial Zones of Solar-type Stars
- The transiting dust clumps in the evolved disk of the Sun-like UXor RZ Psc
- Constraints on the pre-impact orbits of Solar System giant impactors
- A new sample of warm extreme debris disks from the ALLWISE catalog
- New debris disks in nearby young moving groups
- Dynamical Evolution of the Debris Disk after a Satellite Catastrophic Disruption around Saturn
- Rocky Planet Formation: Quick and Neat
- Dust size and spatial distributions in debris discs: predictions for exozodiacal dust dragged in from an exo-Kuiper belt
- The energy budget and figure of Earth during recovery from the Moon-forming giant impact
- Herschel Observations of Dusty Debris Disks
- Probing the Terrestrial Regions of Planetary Systems: Warm Debris Disks with Emission Features
- Mid-infrared Studies of HD 113766 and HD 172555: Assessing Variability in the Terrestrial Zone of Young Exoplanetary Systems
- The dynamical evolution of transiting planetary systems including a realistic collision prescription
- The Little Dippers: Transits of Star-grazing Exocomets?
- Collision Chains among the Terrestrial Planets. III. Formation of the Moon
- Effect of Re-impacting Debris on the Solidification of the Lunar Magma Ocean
- Fate of the runner in hit-and-run collisions
- Extrasolar Kuiper Belts
- The Role of Giant Impacts in Planet Formation
- Evolution from protoplanetary to debris discs: The transition disc around HD 166191
- Models of the Eta Corvi debris disk from the Keck Interferometer, Spitzer and Herschel
- The twofold debris disk around HD 113766 A - Warm and cold dust as seen with VLTI/Midi and Herschel/Pacs
- Oort cloud asteroids: Collisional evolution, the Nice Model, and the Grand Tack
- HD 145263: Spectral Observations of Silica Debris Disk Formation via Extreme Space Weathering?
- Spectral energy distribution simulations of a possible ring structure around the young, red brown dwarf G196-3B
- IR-excesses around nearby Lambda Boo stars are caused by debris disks rather than ISM bow waves
- Implantation of Martian materials in the inner solar system by a mega impact on Mars
- A Star-sized Impact-Produced Dust Clump in the Terrestrial Zone of the HD 166191 System
- The Absence of Cold Dust around Warm Debris Disk Star HD 15407A
- Planetary Embryo Collisions and the Wiggly Nature of Extreme Debris Disks
- Inner edges of planetesimal belts: collisionally eroded or truncated?
- Rocky histories: The effect of high excitations on the formation of rocky planets
- Debris Disks: Probing Planet Formation
- Highly structured inner planetary system debris around the intermediate age Sun-like star TYC 8830 410 1
- Circumstellar discs: What will be next?
- Dynamical and biological panspermia constraints within multi-planet exosystems
- Searching for Biosignatures in Exoplanetary Impact Ejecta
- Mid-infrared time-domain study of recent dust production events in the extreme debris disc of TYC 4209-1322-1
- Catastrophic events in protoplanetary disks and their observational manifestations
- Transient chaos and fractal structures in planetary feeding zones
- Large Interferometer For Exoplanets (LIFE). XIV. Finding terrestrial protoplanets in the galactic neighborhood
- The distribution of impactor core material during large impacts on Earth-like planets
- A second planetesimal collision in the Fomalhaut system
- Takeout and Delivery: Erasing the Dusty Signature of Late-stage Terrestrial Planet Formation
- Isolating the extreme debris disc signature -- explorations of eccentric extreme debris discs formed by giant impacts
- Discovery of Volatile Gas in the Giant Impact Disk around the 150-Myr old HD 23514
- Can the dustiest main sequence stars tell us about the rocky planet formation process?
- Gaia-GIC-1: An Evolving Catastrophic Planetesimal Collision Candidate
- Re-accretion of Giant Impact Ejecta Can Drive Significant Atmospheric Erosion on Terrestrial Planets
- The energy budgets of giant impacts