Rapid Coagulation of Porous Dust Aggregates Outside the Snow Line: A Pathway to Successful Icy Planetesimal Formation
arXiv:1204.5035 · doi:10.1088/0004-637X/752/2/106
Abstract
Rapid orbital drift of macroscopic dust particles is one of the major obstacles against planetesimal formation in protoplanetary disks. We reexamine this problem by considering porosity evolution of dust aggregates. We apply a porosity model based on recent N-body simulations of aggregate collisions, which allows us to study the porosity change upon collision for a wide range of impact energies. As a first step, we neglect collisional fragmentation and instead focus on dust evolution outside the snow line, where the fragmentation has been suggested to be less significant than inside the snow line because of a high sticking efficiency of icy particles. We show that dust particles can evolve into highly porous aggregates (with internal densities of much less than 0.1 g/cm^3) even if collisional compression is taken into account. We also show that the high porosity triggers significant acceleration in collisional growth. This acceleration is a natural consequence of particles' aerodynamical property at low Knudsen numbers, i.e., at particle radii larger than the mean free path of the gas molecules. Thanks to this rapid growth, the highly porous aggregates are found to overcome the radial drift barrier at orbital radii less than 10 AU (assuming the minimum-mass solar nebula model). This suggests that, if collisional fragmentation is truly insignificant, formation of icy planetesimals is possible via direct collisional growth of submicron-sized icy particles.
17 pages, 13 figures, ApJ, in press; typos corrected, references updated
Cited by in corpus (251)
- The Disk Substructures at High Angular Resolution Project (DSHARP): I. Motivation, Sample, Calibration, and Overview
- Forming the cores of giant planets from the radial pebble flux in protoplanetary discs
- Observations of Protoplanetary Disk Structures
- The Disk Substructures at High Angular Resolution Project (DSHARP) VI: Dust trapping in thin-ringed protoplanetary disks
- The Disk Substructures at High Angular Resolution Project (DSHARP): V. Interpreting ALMA maps of protoplanetary disks in terms of a dust model
- The Mass and Size Distribution of Planetesimals Formed by the Streaming Instability. I. The Role of Self-Gravity
- The stickiness of micrometer-sized water-ice particles
- Sintering-induced Dust Ring Formation in Protoplanetary Disks: Application to the HL Tau Disk
- Dust Evolution and the Formation of Planetesimals
- Planetesimal formation starts at the snow line
- Fluffy dust forms icy planetesimals by static compression
- Imaging the water-snow line during a protostellar outburst
- Close-in planetesimal formation by pile-up of drifting pebbles
- A multi-wavelength analysis for interferometric (sub-)mm observations of protoplanetary disks: radial constraints on the dust properties and the disk structure
- On the water delivery to terrestrial embryos by ice pebble accretion
- Two-Component Secular Gravitational Instability in a Protoplanetary Disk: A Possible Mechanism for Creating Ring-Like Structures
- Molecular abundances and C/O ratios in chemically evolving planet-forming disk midplanes
- Challenges in Planet Formation
- The radial dependence of pebble accretion rates: A source of diversity in planetary systems I. Analytical formulation
- Can dust coagulation trigger streaming instability?
- Opacity of fluffy dust aggregates
- Dust evolution in protoplanetary discs and the formation of planetesimals. What have we learned from laboratory experiments?
- Transport of CO in Protoplanetary Disks: Consequences of Pebble Formation, Settling, and Radial Drift
- Formation of dust-rich planetesimals from sublimated pebbles inside of the snow line
- An Atmospheric Structure Equation for Grain Growth
- Lopsided dust rings in transition disks
- Dust growth and evolution in protoplanetary disks
- Radiation Hydrodynamical Turbulence In Protoplanetary Disks: Numerical Models and Observational Constraints
- Comets formed in solar-nebula instabilities! -- An experimental and modeling attempt to relate the activity of comets to their formation process (corrigendum included)
- C/O and Snowline Locations in Protoplanetary Disks: The Effect of Radial Drift and Viscous Gas Accretion
- How planetary growth outperforms migration
- Cohesion of Amorphous Silica Spheres: Toward a Better Understanding of the Coagulation Growth of Silicate Dust Aggregates
- Grain opacity and the bulk composition of extrasolar planets. II. An analytical model for the grain opacity in protoplanetary atmospheres
- Erosion and the limits to planetesimal growth
- Characterizing the variable dust permeability of planet-induced gaps
- Including Dust Coagulation in Hydrodynamic Models of Protoplanetary Disks: Dust Evolution in the Vicinity of a Jupiter-mass Planet
- Light scattering by fractal dust aggregates: I. Angular dependence of scattering
- The structure of disks around intermediate-mass young stars from mid-infrared interferometry. Evidence for a population of group II disks with gaps
- Dust Evolution Can Produce Scattered Light Gaps in Protoplanetary Disks
- Tracing water vapor and ice during dust growth
- Static compression of porous dust aggregates
- A panoptic model for planetesimal formation and pebble delivery
- Planetesimal Population Synthesis: Pebble Flux Regulated Planetesimal Formation
- Radiation hydrodynamical models of the inner rim in protoplanetary disks
- An Empirical Planetesimal Belt Radius - Stellar Luminosity Relation
- Observations of Solids in Protoplanetary Disks
- Streaming Instability in Turbulent Protoplanetary Disks
- Collisions of CO Ice Grains in Planet Formation
- The formation of the solar system
- Free Collisions in a Microgravity Many-Particle Experiment III: The Collision Behavior of sub-Millimeter-Sized Dust Aggregates
- Temperature Structure in the Inner Regions of Protoplanetary Disks: Inefficient Accretion Heating Controlled by Nonideal Magnetohydrodynamics
- New developments for modern celestial mechanics. I. General coplanar three-body systems. Application to exoplanets
- Planetesimal formation via sweep-up growth at the inner edge of dead zones
- How dust fragmentation may be beneficial to planetary growth by pebble accretion
- Systematic analysis of spectral energy distributions and the dust opacity indices for Class 0 young stellar objects
- Nonsticky Ice at the Origin of the Uniformly Polarized Submillimeter Emission from the HL Tau Disk
- A Tale of Planet Formation: From Dust to Planets
- Gas and multi-species dust dynamics in viscous protoplanetary discs: the importance of the dust back-reaction
- Growth after the streaming instability: from planetesimal accretion to pebble accretion
- The consequences of planetary migration on the minor bodies of the early Solar System
- Unveiling Dust Aggregate Structure in Protoplanetary Disks by Millimeter-wave Scattering Polarization
- Requirements for gravitational collapse in planetesimal formation --- the impact of scales set by Kelvin-Helmholtz and nonlinear streaming instability
- New Constraints From Dust Lines On The Surface Densities Of Protoplanetary Disks
- Microphysical Modeling of Mineral Clouds in GJ1214 b and GJ436 b: Predicting Upper Limits on the Cloud-Top Height
- Dust and gas density evolution at a radial pressure bump in protoplanetary disks
- Effect of dust size and structure on scattered light images of protoplanetary discs
- Light Scattering by Fractal Dust Aggregates. II. Opacity and Asymmetry Parameter
- Planetesimal Formation in Magnetorotationally Dead Zones: Critical Dependence on the Net Vertical Magnetic Flux
- Experimental Study on Bouncing Barriers in Protoplanetary Disks
- Preplanetary scavengers: Growing tall in dust collisions
- Water delivery by pebble accretion to rocky planets in habitable zones in evolving disks
- "Ash-fall" induced by molecular outflow in protostar evolution
- Comet formation in collapsing pebble clouds. What cometary bulk density implies for the cloud mass and dust-to-ice ratio
- Growth and fragmentation of centimetre-sized dust aggregates: the dependence on aggregate size and porosity
- Predicting the observational signature of migrating Neptune-sized planets in low-viscosity disks
- A Lagrangian Model for Dust Evolution in Protoplanetary Disks: Formation of Wet and Dry Planetesimals at Different Stellar Masses
- Apparent disk-mass reduction and planetesimal formation in gravitationally unstable disks in Class 0/I YSOs
- Effect of dust radial drift on viscous evolution of gaseous disk
- Formation of rocky and icy planetesimals inside and outside the snow line: Effects of diffusion, sublimation and back-reaction
- Could 1I/'Oumuamua be an icy fractal aggregate?
- Dust properties across the CO snowline in the HD 163296 disk from ALMA and VLA observations
- Small Planetesimals in a Massive Disk Formed Mars
- Macroscopic Dust in Protoplanetary Disks - From Growth to Destruction
- Tensile Strength of Porous Dust Aggregates
- Formation of solar system analogs I: looking for initial conditions through a population synthesis analysis
- Understanding planet formation using microgravity experiments
- How large are the monomers of dust aggregates in planet-forming disks?: Insights from quantitative optical and near-infrared polarimetry
- From Planetesimals to Planets in Turbulent Protoplanetary Disks I. Onset of Runaway Growth
- N-body simulations of planet formation via pebble accretion I: First Results
- Debris Disc Constraints on Planetesimal Formation
- Candidate Water Vapor Lines to Locate the HO Snowline through High-Dispersion Spectroscopic Observations II. The Case of a Herbig Ae Star
- Detections of trans-Neptunian ice in protoplanetary disks
- The role of pebble fragmentation in planetesimal formation I. Experimental study
- Magnetically Induced Disk Winds and Transport in the HL Tau Disk
- Impacts of dust feedback on a dust ring induced by a planet in a protoplanetary disk
- On shocks driven by high-mass planets in radiatively inefficient disks. II. Three-dimensional global disk simulations
- Porous Dust Particles in Protoplanetary Disks: Application to the HL Tau Disk
- Accreting protoplanets: Spectral signatures and magnitude of gas and dust extinction at H alpha
- Millimeter-sized grains in the protostellar envelopes: where do they come from?
- Rapid formation of Gas Giant Planets via Collisional Coagulation from Dust Grains to Planetary Cores
- X-ray photoevaporation's limited success in the formation of planetesimals by the streaming instability
- Dust Settling and Clumping in MRI Turbulent Outer Protoplanetary Disks
- Collisional Growth and Fragmentation of Dust Aggregates with Low Mass Ratios. I: Critical Collision Velocity for Water Ice
- Structure Formation in a Young Protoplanetary Disk by a Magnetic Disk Wind
- From Pebbles and Planetesimals to Planets and Dust: the Protoplanetary Disk--Debris Disk Connection
- Failed Growth at the Bouncing Barrier in Planetesimal Formation
- The Fate of Planetesimals in Turbulent Disks with Dead Zones. I. The Turbulent Stirring Recipe
- Influence of grain growth on the thermal structure of protoplanetary discs
- The quasi-universality of chondrule size as a constraint for chondrule formation models
- Accretion of Solid Materials onto Circumplanetary Disks from Protoplanetary Disks
- Rapid Formation of Saturn after Jupiter Completion
- Dust continuum emission and the upper limit fluxes of sub-millimeter water lines of the protoplanetary disk around HD 163296 observed by ALMA
- X-ray induced chemistry of water and related molecules in low-mass protostellar envelopes
- The effect of a strong pressure bump in the Sun's natal disk: Terrestrial planet formation via planetesimal accretion rather than pebble accretion
- Dust evolution and satellitesimal formation in circumplanetary disks
- Millimeter-sized Dust Grains Appear Surviving the Water-sublimating Temperature in the Inner 10 au of the FU Ori Disk
- How to make giant planets via pebble accretion
- Ice aggregate contacts at the nm-scale
- The interstellar object 'Oumuamua as a fractal dust aggregate
- Gas accretion damped by dust back-reaction at the snow line
- Evolution of porous dust grains in protoplanetary discs -- I. Growing grains
- A dearth of small particles in debris disks: An energy-constrained smallest fragment size
- Rocky Planetesimal Formation via Fluffy Aggregates of Nanograins
- The role of pebble fragmentation in planetesimal formation II. Numerical simulations
- Diversity in the outcome of dust radial drift in protoplanetary discs
- The Formation and Dynamics of Super-Earth Planets
- Collisional evolution of dust and water ice in protoplanetary discs during and after an accretion outburst
- Is There a Temperature Limit in Planet Formation at 1000 K?
- The ALMA Early Science View of FUor/EXor objects. IV. Misaligned Outflows in the Complex Star-forming Environment of V1647 Ori and McNeil's Nebula
- Debris disc formation induced by planetary growth
- A Condensation-Coalescence Cloud Model for Exoplanetary Atmospheres: Formulation and Test Applications to Terrestrial and Jovian Clouds
- Large dust gaps in the transitional disks of HD 100453 and HD 34282
- The physics of protoplanetesimal dust agglomerates. X. High-velocity collisions between small and large dust agglomerates as growth barrier
- Ring formation by coagulation of dust aggregates in early phase of disk evolution around a protostar
- Satellitesimal Formation via Collisional Dust Growth in Steady Circumplanetary Disks
- Collisions between sintered icy aggregates
- Rocky Planetesimal Formation Aided by Organics
- Self-Induced Dust Traps Around Snow Lines in Protoplanetary Discs
- Growing into and out of the bouncing barrier in planetesimal formation
- Collisional Growth of Icy Dust Aggregates in Disk Formation Stage: Difficulties for Planetesimal Formation via Direct Collisional Growth outside the Snowline
- Effects of Dust Evolution on the Vertical Shear Instability in the Outer Regions of Protoplanetary Disks
- Formation of Terrestrial Planets
- Observed polarized scattered light phase functions of planet-forming disks
- On the stickiness of CO and HO ice particles
- Distant formation and differentiation of outer main belt asteroids and carbonaceous chondrite parent bodies
- Physical Modeling of Dust Polarization from Magnetically Enhanced Radiative Torque (MRAT) Alignment in Protostellar Cores with POLARIS
- Earth and Terrestrial Planet Formation
- Planetesimal formation at the gas pressure bump following a migrating planet I. Basic characteristics of the new formation model
- Candidate Water Vapor Lines to Locate the Snowline through High-dispersion Spectroscopic Observations. III. Submillimeter and Lines
- Planet Formation around Super Massive Black Holes in the Active Galactic Nuclei
- Planetesimal formation around the snow line. II. Dust or pebbles?
- Pebble accretion in class 0/I YSOs as a possible pathway for early planet formation
- Conditions for justifying single-fluid approximation for charged and neutral dust fluids and a smoothed particle magnetohydrodynamics method for dust-gas mixture
- Tracking Dust Grains During Transport and Growth in Protoplanetary Disks
- Coagulation Instability in Protoplanetary Disks: A Novel Mechanism Connecting Collisional Growth and Hydrodynamical Clumping of Dust Particles
- Gravitoviscous protoplanetary disks with a dust component. V. The dynamic model for freeze-out and sublimation of volatiles
- Analytic expressions for geometric cross-sections of fractal dust aggregates
- Are Pebble Pile Planetesimals Doomed?
- Size and density sorting of dust grains in SPH simulations of protoplanetary discs
- A search for companions via direct imaging in the DSHARP planet-forming disks
- Revealing dust segregation in protoplanetary discs with the help of multi-frequency spectral index maps
- From Planetesimal to Planet in Turbulent Disks. II. Formation of Gas Giant Planets
- Collisional Growth and Fragmentation of Dust Aggregates. II. Mass Distribution of Icy Fragments
- New growth mechanism of dust grains in protoplanetary disks with magnetically driven disk winds
- Impact of magneto-rotational instability on grain growth in protoplanetary disks: II. Increased grain collisional velocities
- Haze Formation on Triton
- Outward Motion of Porous Dust Aggregates by Stellar Radiation Pressure in Protoplanetary Disks
- Mineral Snowflakes on Exoplanets and Brown Dwarfs: Coagulation and Fragmentation of Cloud Particles with {\sc HyLandS}
- Evolution of dust porosity through coagulation and shattering in the interstellar medium
- Planetesimal formation around the snow line: I. Monte Carlo simulations of silicate dust pile-up in a turbulent disk
- Breakthrough revisited: investigating the requirements for growth of dust beyond the bouncing barrier
- Two saturated states of the vertical shear instability in protoplanetary disks with vertically varying cooling times
- Compaction during fragmentation and bouncing produces realistic dust grain porosities in protoplanetary discs
- Growing the seeds of pebble accretion through planetesimal accretion
- Dust Coagulation Regulated by Turbulent Clustering in Protoplanetary Disks
- Thermal inertias of pebble-pile comet 67P/Churyumov-Gerasimenko
- Constraints on PDS 70 b and c from the dust continuum emission of the circumplanetary discs considering in situ dust evolution
- Limits on Protoplanet Growth by Accretion of Small Solids
- The dimming of RW Auriga. Is dust accretion preceding an outburst?
- Dust Growth and Dynamics in Protoplanetary Nebulae: Implications for Opacity, Thermal Profile and Gravitational Instability
- Global Modeling of Nebulae With Particle Growth, Drift, and Evaporation Fronts. II. The Influence of Porosity on Solids Evolution
- Presolar grain dynamics: creating nucleosynthetic variations through a combination of drag and viscous evolution
- Formulating Compressive Strength of Dust Aggregates from Low to High Volume Filling Factors with Numerical Simulations
- ExoLyn: a golden mean approach to multi-species cloud modelling in atmospheric retrieval
- Collisions of solid ice in planetesimal formation
- Dust Motion and Possibility of Dust Growth in a Growing Circumstellar Disk
- Geometrical structure and thermal conductivity of dust aggregates formed via ballistic cluster-cluster aggregation
- Interstellar planetesimals: potential seeds for planet formation?
- Onset of oligarchic growth and implication for accretion histories of dwarf planets
- Onset of planet formation in the warm inner disk -- Colliding dust aggregates at high temperatures
- Probing the Temperature Structure of the Inner Region of a Protoplanetary Disk
- Rotational Disruption of Porous Dust Aggregates due to Gas Flow in Protoplanetary Disks
- Planetesimal Formation by Gravitational Instability of a Porous-Dust Disk
- United Theory of Planet Formation (I): Tandem Regime
- N-body simulations of terrestrial planet growth with resonant dynamical friction
- A "no-drift" runaway pile-up of pebbles in protoplanetary disks in which midplane turbulence increases with radius
- Depletion of Moderately Volatile Elements by Open-System loss in the Early Solar Nebula
- Formation of "Blanets" from Dust Grains around the Supermassive Black Holes in Galaxies
- Dust mass in protoplanetary disks with porous dust opacities
- Formation of the First Planetesimals via the Streaming Instability in Globally Turbulent Protoplanetary Disks?
- Massive Protostellar Disks as a Hot Laboratory of Silicate Grain Evolution
- Global Modeling of Nebulae With Particle Growth, Drift, and Evaporation Fronts. III. Redistribution of Refractories and Volatiles
- Investigating the Bouncing Barrier with Collision Simulations of Compressed Dust Aggregates
- Assessment of Cr isotopic heterogeneities of volatile-rich asteroids based on multiple planet formation models
- Experimental study of clusters in dense granular gas and implications for the particle stopping time in protoplanetary disks
- A quantification of hydrodynamical effects on protoplanetary dust growth
- Dynamics of Porous Dust Aggregates and Gravitational Instability of Their Disk
- Evolution of dust grain size distribution and grain porosity in galaxies
- Detailed Model of the Growth of Fluffy Dust Aggregates in a Protoplanetary Disk: Effects of Nebular Conditions
- Planetesimal formation via the streaming instability in simulations of infall dominated young disks
- Effective dust growth in laminar circumplanetary discs with magnetic wind-driven accretion
- Ejection of Chondrules from Fluffy Matrices
- Formation of multiple-planet systems in resonant chains around M dwarfs
- Nonlinear Outcome of Coagulation Instability in Protoplanetary Disks II: Dust Ring Formation Mediated by Backreaction and Fragmentation
- Multi-Particle Collisions in Microgravity: Coefficient of Restitution and Sticking Threshold for Systems of Mm-Sized Particles
- Structure of Protoplanetary Discs with Magnetically-driven Winds
- Selective Aggregation Experiments on Planetesimal Formation and Mercury-Like Planets
- Nonlinear Outcome of Coagulation Instability in Protoplanetary Disks I: First Numerical Study of Accelerated Dust Growth and Dust Concentration at Outer Radii
- Super-Earth formation in systems with cold giants
- Dust grain shattering in protoplanetary discs: collisional fragmentation or rotational disruption?
- The influence of planetesimal fragmentation on planet formation
- Interstellar carbonaceous dust erosion induced by X-ray irradiation of water ice in star-forming regions
- ALMA Observations of the Inner Cavity in the Protoplanetary Disk around Sz 84
- Aggregate Growth and Internal structures of Chondrite Parent Bodies Forming from Dense Clumps
- The evolution of a circumplanetary disc with a dead zone
- Dust Dynamics in Transitional Disks: Clumping and Disk Recession
- A "no-drift" runaway pile-up of pebbles in protoplanetary disks II. Characteristics of the resulting planetesimal belt
- Scattering and sublimation: a multi-scale view of m-sized dust in the inclined disc of HD 145718
- Planet-driven spirals in protoplanetary discs: limitations of the semi-analytical theory for observations
- Great comet C/2023 A3 (Tsuchinshan-ATLAS): dust loss before perihelion
- SHAMPOO: A stochastic model for tracking dust particles under the influence of non-local disk processes
- Aeolian erosion in protoplanetary discs: How impactful it is on dust evolution?
- Dust processing in protoplanetary envelopes as the origin of hot minerals in comets
- Exploring the conditions for forming planetesimals by the streaming instability and planetary systems by pebble accretion
- On planet formation around supermassive black holes and the grain disruption barriers by radiative torques
- Interparticle normal force in highly porous granular matter during compression
- Discerning between different 'Oumuamua models by optical and infrared observations
- Effects of Stellar X-ray Photoevaporation on Planetesimal Formation via the Streaming Instability
- Forming Earth-like and Low-Mass Rocky Exoplanets Through Pebble and Planetesimal Accretion
- The Impact of Silicate Grain Coagulation on Millimeter Emission from Massive Protostellar Disks
- Gravitational instability of a dust layer composed of porous silicate dust aggregates in a protoplanetary disk
- Hypothesis about Enrichment of Solar System
- A Pathway for Collisional Planetesimal Growth in the Ice-Dominant Regions of Protoplanetary Disks
- Hydrodynamical simulations of the vertical shear instability with dynamic dust and cooling rates in protoplanetary disks
- A fast tree algorithm for multi-component coagulation equation
- Modelling dust coagulation, dynamical drag and turbulent mixing during star and disc formation
- Dust coagulation during the early stages of star formation: molecular cloud collapse and first hydrostatic core evolution
- The formation of planetary systems with SPICA
- On the crystallinity of silicate dust in evolving protoplanetary disks due to magnetically driven disk winds
- Planetesimal formation at the gas pressure bump following a migrating planet II. Effects of dust growth
- The Influence of the Fractal Dimension on Dust Evolution in Protoplanetary Disks