Warm Debris Disks Produced by Giant Impacts During Terrestrial Planet Formation
arXiv:1508.00977 · doi:10.1088/0004-637X/810/2/136
Abstract
In our solar system, Mars-sized protoplanets frequently collided with each other during the last stage of terrestrial planet formation called the giant impact stage. Giant impacts eject a large amount of material from the colliding protoplanets into the terrestrial planet region, which may form debris disks with observable infrared excesses. Indeed, tens of warm debris disks around young solar-type stars have been observed. Here, we quantitatively estimate the total mass of ejected materials during the giant impact stages. We found that 0.4 times the Earth's mass is ejected in total throughout the giant impact stage. Ejected materials are ground down by collisional cascade until micron-sized grains are blown out by radiation pressure. The depletion timescale of these ejected materials is determined primarily by the mass of the largest body among them. We conducted high-resolution simulations of giant impacts to accurately obtain the mass of the largest ejected body. We then calculated the evolution of the debris disks produced by a series of giant impacts and depleted by collisional cascades to obtain the infrared excess evolution of the debris disks. We found that the infrared excess is almost always higher than the stellar infrared flux throughout the giant impact stage (100 Myr) and is sometimes 10 times higher immediately after a giant impact. Therefore, giant impact stages would explain the infrared excess from most observed warm debris disks. The observed fraction of stars with warm debris disks indicates that the formation probability of our solar system-like terrestrial planets is approximately 10%.
Accepted to ApJ
References in corpus (11)
- Migration and the formation of systems of hot super-Earths and Neptunes
- A stellar-mass-dependent drop in planet occurrence rates
- Debris disks around Sun-like stars
- Highly Siderophile Elements in the Earth's Mantle as a Clock for the Moon-forming Impact
- 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
- Formation of Phobos and Deimos via a Giant Impact
- 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
- N-body Simulations of Terrestrial Planet Formation under the Influence of a Hot Jupiter
- Debris disc formation induced by planetary growth
Cited by in corpus (46)
- Planet Hunters X. KIC 8462852 - Where's the Flux?
- The terrestrial late veneer from core disruption of a lunar-sized impactor
- Late veneer and late accretion to the terrestrial planets
- How to design a planetary system for different scattering outcomes: giant impact sweet spot, maximising exocomets, scattered disks
- Ring Formation around Giant Planets by Tidal Disruption of a Single Passing Large Kuiper Belt Object
- Resolution Dependence of Disruptive Collisions between Planetesimals in the Gravity Regime
- Extreme Debris Disk Variability -- Exploring the Diverse Outcomes of Large Asteroid Impacts During the Era of Terrestrial Planet Formation
- Debris Disc Constraints on Planetesimal Formation
- Ejection of iron-bearing giant-impact fragments and the dynamical and geochemical influence of the fragment re-accretion
- Formation of Centaurs' rings through their partial tidal disruption during planetary encounters
- Insights into planet formation from debris disks: II. Giant impacts in extrasolar planetary systems
- ALMA Survey of Lupus Class III Stars: Early Planetesimal Belt Formation and Rapid Disk Dispersal
- Variations on Debris Disks III. Collisional Cascades and Giant Impacts in the Terrestrial Zones of Solar-type Stars
- Realistic On-The-Fly Outcomes of Planetary Collisions: Machine Learning Applied to Simulations of Giant Impacts
- The first 40 million years of circumstellar disk evolution: the signature of terrestrial planet formation
- A new sample of warm extreme debris disks from the ALLWISE catalog
- New debris disks in nearby young moving groups
- Rocky Planet Formation: Quick and Neat
- Impact Erosion Model for Gravity-Dominated Planetesimals
- Formation of Close-in Super-Earths by Giant Impacts: Effects of Initial Eccentricities and Inclinations of Protoplanets
- Assessment of the probability of microbial contamination for sample return from Martian moons II: The fate of microbes on Martian moons
- Dynamical avenues for Mercury's origin I: The lone survivor of a primordial generation of short-period proto-planets
- Habitable planet formation around low-mass stars: Rapid accretion, rapid debris removal and the essential contribution of external giants
- The Role of Giant Impacts in Planet Formation
- Extreme Variability of the V488 Persei Debris Disk
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) I: Motivation, sample, data reduction, and results overview
- HD 145263: Spectral Observations of Silica Debris Disk Formation via Extreme Space Weathering?
- A Star-sized Impact-Produced Dust Clump in the Terrestrial Zone of the HD 166191 System
- Transient events in bright debris discs: Collisional avalanches revisited
- Impact Ejecta near the Impact Point Observed using Ultra-high-speed Imaging and SPH Simulations, and a Comparison of the Two Methods
- Highly structured inner planetary system debris around the intermediate age Sun-like star TYC 8830 410 1
- Debris Disks: Probing Planet Formation
- Importance of Giant Impact Ejecta for Orbits of Planets Formed during the Giant Impact Era
- Faint warm debris disks around nearby bright stars explored by AKARI and IRSF
- Building Terrestrial Planets: Why results of perfect-merging simulations are not quantitatively reliable approximations to accurate modeling of terrestrial planet formation
- A Pluto--Charon Concerto II. Formation of a Circumbinary Disk of Debris After the Giant Impact
- A Pluto-Charon Sonata III. Growth of Charon from a Circum-Pluto Ring of Debris
- 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
- A Constraint on the Amount of Hydrogen from the CO Chemistry in Debris Disks
- A WISE View of IRAS Debris Disks: Revising the Dust Properties
- Metal-silicate mixing in planetesimal collisions
- Takeout and Delivery: Erasing the Dusty Signature of Late-stage Terrestrial Planet Formation
- Gaia-GIC-1: An Evolving Catastrophic Planetesimal Collision Candidate
- Re-accretion of Giant Impact Ejecta Can Drive Significant Atmospheric Erosion on Terrestrial Planets