Rapid planetesimal formation in turbulent circumstellar discs
arXiv:0708.3890 · doi:10.1038/nature06086
Abstract
The initial stages of planet formation in circumstellar gas discs proceed via dust grains that collide and build up larger and larger bodies (Safronov 1969). How this process continues from metre-sized boulders to kilometre-scale planetesimals is a major unsolved problem (Dominik et al. 2007): boulders stick together poorly (Benz 2000), and spiral into the protostar in a few hundred orbits due to a head wind from the slower rotating gas (Weidenschilling 1977). Gravitational collapse of the solid component has been suggested to overcome this barrier (Safronov 1969, Goldreich & Ward 1973, Youdin & Shu 2002). Even low levels of turbulence, however, inhibit sedimentation of solids to a sufficiently dense midplane layer (Weidenschilling & Cuzzi 1993, Dominik et al. 2007), but turbulence must be present to explain observed gas accretion in protostellar discs (Hartmann 1998). Here we report the discovery of efficient gravitational collapse of boulders in locally overdense regions in the midplane. The boulders concentrate initially in transient high pressures in the turbulent gas (Johansen, Klahr, & Henning 2006), and these concentrations are augmented a further order of magnitude by a streaming instability (Youdin & Goodman 2005, Johansen, Henning, & Klahr 2006, Johansen & Youdin 2007) driven by the relative flow of gas and solids. We find that gravitationally bound clusters form with masses comparable to dwarf planets and containing a distribution of boulder sizes. Gravitational collapse happens much faster than radial drift, offering a possible path to planetesimal formation in accreting circumstellar discs.
To appear in Nature (30 August 2007 issue). 18 pages (in referee mode), 3 figures. Supplementary Information can be found at 0708.3893
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- Oort cloud Ecology II: The chronology of the formation of the Oort cloud
- Can planetesimals form by collisional fusion?
- Forming pressure-traps at the snow-line to isolate isotopic reservoirs in the absence of a planet
- Formation and evolution of planetary systems: the impact of high angular resolution optical techniques
- Constraining planetesimal stirring: how sharp are debris disc edges?
- Checking the Compatibility of the Cold Kuiper Belt with a Planetary Instability Migration Model
- Reconstructing the size distribution of the primordial Main Belt
- Crossing barriers in planetesimal formation: The growth of mm-dust aggregates with large constituent grains
- Planetesimal formation in self-gravitating discs: the effects of particle self-gravity and back-reaction
- Two key parameters controlling particle clumping caused by streaming instability in the dead-zone dust layer of a protoplanetary disk
- The collisional evolution of undifferentiated asteroids and the formation of chondritic meteoroids
- N-body simulations of planet formation via pebble accretion II. How various giant planets form
- Gravitoviscous protoplanetary disks with a dust component. III. Evolution of gas, dust, and pebbles
- A hypothesis for the rapid formation of planets
- Oligarchic planetesimal accretion and giant planet formation II
- The Spiral Wave Instability Induced by a Giant Planet: I. Particle Stirring in the Inner Regions of Protoplanetary Disks
- Rocky Planet Formation: Quick and Neat
- The Formation and Dynamics of Super-Earth Planets
- Vortices in self-gravitating gaseous discs
- Secular Gravitational Instability of a Dust Layer in Shear Turbulence
- Clustering, fronts, and heat transfer in turbulent suspensions of heavy particles
- On the origin of the Almahata-Sitta meteorite and 2008TC3 asteroid
- The heating history of Vesta and the onset of differentiation
- Anatomy of rocky planets formed by rapid pebble accretion II. Differentiation by accretion energy and thermal blanketing
- Disc population synthesis: Decrease in the solid mass reservoir through pebble drift
- Planetesimal clearing and size-dependent asteroid retention by secular resonance sweeping during the depletion of the solar nebula
- Circumstellar disks and planets. Science cases for next-generation optical/infrared long-baseline interferometers
- Global variation of the dust-to-gas ratio in evolving protoplanetary discs
- Planetesimals to Protoplanets II: Effect of Debris on Terrestrial Planet Formation
- Terrestrial planet formation from a ring
- The coexistence of the streaming instability and the vertical shear instability in protoplanetary disks: Planetesimal formation thresholds explored in two-dimensional global models
- An Analytical Theory for the Growth from Planetesimals to Planets by Polydisperse Pebble Accretion
- Did Jupiter's core form in the innermost parts of the Sun's protoplanetary disk?
- Planetesimal collisions as a chondrule forming event
- The importance of thermal torques on the migration of planets growing by pebble accretion
- Effect of turbulence on collisions of dust particles with planetesimals in protoplanetary disks
- The physics of protoplanetesimal dust agglomerates. X. High-velocity collisions between small and large dust agglomerates as growth barrier
- Constraining the parameter space for the Solar Nebula
- An Observational Study for Grain Dynamics in the AS 209 Disk with Submillimeter Polarization
- Circumbinary Planet Formation in the Kepler-16 System. II. A Toy Model for In-situ Planet Formation within a Debris Belt
- Induced Turbulence and the Density Structure of the Dust Layer in a Protoplanetary Disk
- Protoplanetary dust porosity and FU Orionis Outbursts: Solving the mystery of Earth's missing volatiles
- A pebbles accretion model with chemistry and implications for the solar system
- From Dust to Planets I: Planetesimal and Embryo Formation
- Planetesimal Initial Mass Functions following Diffusion Regulated Gravitational Collapse
- UV photolysis, organic molecules in young disks, and the origin of meteoritic amino acids
- The hot main Kuiper belt size distribution from OSSOS
- Super-Earths: A New Class of Planetary Bodies
- The Validity of the Super-Particle Approximation during Planetesimal Formation
- Dusty spirals triggered by shadows in transition discs
- Collisional Growth of Icy Dust Aggregates in Disk Formation Stage: Difficulties for Planetesimal Formation via Direct Collisional Growth outside the Snowline
- The water-ice line as a birthplace of planets: Implications of a species-dependent dust fragmentation threshold
- Planet seeding through gas-assisted capture of interstellar objects
- Rocky Planetesimal Formation Aided by Organics
- Modification of Angular Velocity by Inhomogeneous MRI Growth in Protoplanetary Disks
- N-Body Simulations of Growth from 1 km Planetesimals at 0.4 AU
- Investigating Gravitational Collapse of a Pebble Cloud to form Transneptunian Binaries
- Linking planetary embryo formation to planetesimal formation II: The impact of pebble accretion in the terrestrial planet zone
- Detection of turbulent thermal diffusion of particles in numerical simulations
- On the stickiness of CO and HO ice particles
- Formation of Terrestrial Planets
- Dust Settling Instability in Protoplanetary Discs
- Migration processes in the Solar System and their role in the evolution of the Earth and planets
- The role of magnetic fields for planetary formation
- Direct measurement of decimeter-sized rocky material in the Oort cloud
- Earth and Terrestrial Planet Formation
- Resilience of Planetesimal Formation in Weakly-Reinforced Pressure Bumps
- Nonlinear Evolution of the Resonant Drag Instability in Magnetized Gas
- VLT/SPHERE Multi-Wavelength High-Contrast Imaging of the HD 115600 Debris Disk: New Constraints on the Dust Geometry and the Presence of Young Giant Planets
- Deciphering the Origin of the Regular Satellites of Gaseous Giants - Iapetus: the Rosetta Ice-Moon
- Learning about comets from the study of mass distributions and fluxes of meteoroid streams
- Far and extreme ultraviolet radiation fields and consequent disc destruction in star-forming regions
- Direct Formation of Planetary Embryos in Self-Gravitating Disks
- Sequential giant planet formation initiated by disc substructure
- Turbulence Induced Collision Velocities and Rates between Different Sized Dust Grains
- Growth of calcium-aluminum-rich inclusions by coagulation and fragmentation in a turbulent protoplanetary disk: observations and modelisation
- A Smoking Gun for Planetesimal Formation: Charge Driven Growth into a New Size Range
- Linking planetesimal and dust content in protoplanetary disks via a local toy model
- Evolution of the parent body of enstatite (EL) chondrites
- Pebble accretion in class 0/I YSOs as a possible pathway for early planet formation
- Forming the Cold Classical Kuiper Belt in a light Disk
- Planetesimal formation in self-gravitating discs -- dust trapping by vortices
- Hydrodynamic interactions and extreme particle clustering in turbulence
- An inflationary disk phase to explain extended protoplanetary dust disks
- Coagulation Instability in Protoplanetary Disks: A Novel Mechanism Connecting Collisional Growth and Hydrodynamical Clumping of Dust Particles
- Origin and dynamical evolution of the asteroid belt
- Tracking Dust Grains During Transport and Growth in Protoplanetary Disks
- On the Vertical Shear Instability in Magnetized Protoplanetary Disks
- Collisional heating and compaction of small bodies: Constraints for their origin and evolution
- Turbulence induced collisional velocities and density enhancements: large inertial range results from shell models
- Spontaneous concentrations of solids through two-way drag forces between gas and sedimenting particles
- ALMA Super-resolution Imaging of T Tau: r = 12 au Gap in the Compact Dust Disk around T Tau N
- Chondrule Formation via Impact Jetting Triggered by Planetary Accretion
- Evidence for Pebbles in Comets
- Building massive compact planetesimal disks from the accretion of pebbles
- The formation of wide exoKuiper belts from migrating dust traps
- Are there any pristine comets? Constraints from pebble structure
- Dust Settling in Magnetorotationally-Driven Turbulent Discs II: The Pervasiveness of the Streaming Instability and its Consequences
- FU Orionis outbursts, preferential recondensation of water ice, and the formation of giant planets
- Evolution of MU69 from a binary planetesimal into contact by Kozai-Lidov oscillations and nebular drag
- The impact of pre-main sequence stellar evolution on midplane snowline locations and C/O in planet forming discs
- Still water: dead zones and collimated ejecta from the impact of granular jets
- Radiatively heated, protoplanetary discs with dead zones. I. Dust settling and thermal structure of discs around M stars
- Possible Ribose Synthesis in Carbonaceous Planetesimals
- Establishing Dust Rings and Forming Planets Within Them
- Making the Solar System
- Channels for streaming instability in dusty discs
- Vertical shear instability in two-moment radiation-hydrodynamical simulations of irradiated protoplanetary disks I. Angular momentum transport and turbulent heating
- The Invisible Majority? Evolution and Detection of Outer Planetary Systems without Gas Giants
- Turbulence-Induced Relative Velocity of Dust Particles III: The Probability Distribution
- Constraining planet formation around 6-8 stars
- PIERNIK mhd code - a multi-fluid, non-ideal extension of the relaxing-TVD scheme (II)
- The circulation of dust in protoplanetary discs and the initial conditions of planet formation
- Multiwavelength interferometric observations and modeling of circumstellar disks
- Observing protoplanetary discs with the Square Kilometre Array -- I. Characterising pebble substructure caused by forming planets
- Explaining Mercury's Density through Magnetic Erosion
- Planet-vortex interaction:How a vortex can shepherd a planetary embryo
- The curious case of Mars formation
- Dust Concentration at the Boundary Between Steady Super/Sub-Keplerian Flow Created by Inhomogeneous Growth of MRI
- Growth of Aggregates with Liquid-Like Ice-Shells in Protoplanetary Discs
- The early instability scenario: Mars' mass explained by Jupiter's orbit
- Vertical settling of pebbles in turbulent circumbinary discs and the in situ formation of circumbinary planets
- Why are Jupiter-family comets active and asteroids in cometary-like orbits inactive?
- Breakthrough revisited: investigating the requirements for growth of dust beyond the bouncing barrier
- Vertical shear instability in two-moment radiation-hydrodynamical simulations of irradiated protoplanetary disks II. Secondary instabilities and stability regions
- High resolution observations of molecular emission lines toward the CI Tau proto-planetary disc: planet-carved gaps or shadowing?
- Which stars can form planets: Planetesimal formation at low metallicities
- Streaming instabilities in accreting and magnetized laminar protoplanetary disks
- Revisiting collisional dust growth in Class 0/I protostellar disks: Sweep-up can convert a few of dust into kg pebbles in 0.1 Myr
- Observation of bottom-up formation for charged grain aggregates related to pre-planetary evolution beyond the bouncing barrier
- Growing the seeds of pebble accretion through planetesimal accretion
- A sub-grid model for the growth of dust particles in hydrodynamical simulations of protoplanetary disks
- Primordial Dusty Rings and Episodic Outbursts in Protoplanetary Discs
- The influence of Reynolds and Froude number on the motion of settling, bidisperse inertial particles in turbulence
- Experiments on cometary activity: ejection of dust aggregates from a sublimating water-ice surface
- N-Body Simulation of Planetesimal Formation through Gravitational Instability of a Dust Layer in Laminar Gas Disk
- Planetesimal Formation at the Boundary Between Steady Super/Sub-Keplerian Flow Created by Inhomogeneous Growth of Magnetorotational Instability
- The radial structure of planetary bodies formed by the streaming instability
- Formation of Planetary Populations II: Effects of Initial Disk Size & Radial Dust Drift
- Probing the history of Solar System through the cratering records on Vesta and Ceres
- Turbulent Thermal Diffusion: A Way to Concentrate Dust in Protoplanetary Discs
- Thermal inertias of pebble-pile comet 67P/Churyumov-Gerasimenko
- Are SMBHs shrouded by "super-Oort" clouds of comets and asteroids?
- Theory of planet formation
- Solving for the 2D Water Snowline with Hydrodynamic Simulations. Emergence of gas outflow, water cycle and temperature plateau
- Migrating Planets into Ultra-Short-Period Orbits during Episodic Accretion Events
- On the nature of the resonant drag instability of dust streaming in protoplanetary disc
- Identification of a 4.3 billion year old asteroid family and planetesimal population in the Inner Main Belt
- Streaming instability on different scales. I. Planetesimal mass distribution variability
- High Resolution Study of Planetesimal Formation by Gravitational Collapse of Pebble Clouds
- Modelling circumbinary protoplanetary disks II. Gas disk feedback on planetesimal dynamical and collisional evolution in the circumbinary systems Kepler-16 and 34
- Forming Different Planetary Systems
- AB Aurigae: Possible evidence of planet formation through the gravitational instability
- Size of the group IVA iron meteorite core: Constraints from the age and composition of Muonionalusta
- Formulating Compressive Strength of Dust Aggregates from Low to High Volume Filling Factors with Numerical Simulations
- Toward a Population Synthesis of Disks and Planets I. Evolution of Dust with Entrainment in Winds and Radiation Pressure
- Global Modeling of Nebulae With Particle Growth, Drift, and Evaporation Fronts. II. The Influence of Porosity on Solids Evolution
- Dense Particle Clouds in Laboratory Experiments in Context of Drafting and Streaming Instability
- Spectral characterisation of inertial particle clustering in turbulence
- Instabilities and Flow Structures in Protoplanetary Disks: Setting the Stage for Planetesimal Formation
- Planetary core formation via multi-species pebble accretion
- Three-dimensional transport of solids in a protoplanetary disk containing a growing giant planet
- Turbulence in particle laden midplane layers of planet forming disks
- Planetesimal formation via the streaming instability with multiple grain sizes
- Closeby Habitable Exoplanet Survey (CHES). I. Astrometric Noise and Planetary Detection Efficiency due to Stellar Spots and Faculae
- Collisions of solid ice in planetesimal formation
- Rethinking the role of the giant planet instability in terrestrial planet formation models
- Neutron Star Planets: Atmospheric processes and habitability
- The Spherically Symmetric Gravitational Collapse of a Clump of Solids in a Gas
- Free Collisions in a Microgravity Many-Particle Experiment. IV. - Three-Dimensional Analysis of Collision Properties
- Clump formation due to the gravitational instability of a multiphase medium in a massive protoplanetary disc
- The Architectural Design Rules of Solar Systems based on the New Perspective
- A Possible Detection of Occultation by a Proto-planetary Clump in GM Cephei
- Combined Effects of Disk Winds and Turbulence-Driven Accretion on Planet Populations
- The angular momentum of two collided rarefied preplanetesimals and the formation of binaries
- Forming Chondrites in a Solar Nebula with Magnetically Induced Turbulence
- Onset of oligarchic growth and implication for accretion histories of dwarf planets
- The effect of the streaming instability on protoplanetary disc emission at millimetre wavelengths
- Dynamo effect in unstirred self-gravitating turbulence
- Making Terrestrial Planets: High Temperatures, FU Orionis Outbursts, Earth, and Planetary System Architectures
- MRI-driven angular momentum transport in protoplanetary disks
- Interstellar planetesimals: potential seeds for planet formation?
- Formation of Jupiter and Conditions for Accretion of the Galilean Satellites
- Can the giant planets of the Solar System form via pebble accretion in a smooth protoplanetary disc?
- Insights into planet formation from debris disks: I. The solar system as an archetype for planetesimal evolution
- Limits on the number of primordial Scattered Disk objects at Pluto mass and higher from the absence of their dynamical signatures on the present day trans-Neptunian Populations
- Dust-gas dynamics driven by the streaming instability with various pressure gradients
- The cosmochemistry of planetary systems
- Global drag-induced instabilities in protoplanetary disks
- Formation of the Earth and Moon: Influence of Small Bodies
- Rotational Disruption of Porous Dust Aggregates due to Gas Flow in Protoplanetary Disks
- N-Body Simulation of Planetesimal Formation through Gravitational Instability and Coagulation. II. Accretion Model
- Connecting Planetary Composition with Formation
- A particle-based hybrid code for planet formation
- Planetesimal Formation by Gravitational Instability of a Porous-Dust Disk
- Formation of trans-Neptunian satellite systems at the stage of condensations
- Dynamical rearrangement of super-Earths during disk dispersal II. Assessment of the magnetospheric rebound model for planet formation scenarios
- N-body simulations of terrestrial planet growth with resonant dynamical friction
- Migration traps as the root cause of the Kepler dichotomy
- Fast formation of large ice pebbles after FU Orionis outbursts
- Sub-mm/mm optical properties of real protoplanetary matter derived from Rosetta/MIRO observations of comet 67P
- United Theory of Planet Formation (I): Tandem Regime
- Effect of Different Angular Momentum Transport mechanisms on the Distribution of Water in Protoplanetary Disks
- Polydisperse Formation of Planetesimals: The dust size distribution in clumps
- Growing dust grains in protoplanetary discs - I. Radial drift with toy growth models
- The Magnetorotational Instability Prefers Three Dimensions
- Dust accretion in binary systems: implications for planets and transition discs
- 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
- Experimental study of clusters in dense granular gas and implications for the particle stopping time in protoplanetary disks
- Size and density sorting of dust grains in SPH simulations of protoplanetary disc II: Fragmentation
- HD 83443c: A highly eccentric giant planet on a 22-year orbit
- Formation of embryos of the Earth and the Moon from the common rarefied condensation and their subsequent growth
- Photophoresis boosts giant planet formation
- Dynamics of Porous Dust Aggregates and Gravitational Instability of Their Disk
- Dust growth by accretion of molecules in supersonic interstellar turbulence
- Investigating the Bouncing Barrier with Collision Simulations of Compressed Dust Aggregates
- 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
- The role of density perturbation on planet formation by pebble accretion
- On the interaction of pebble accreting embryos with the gaseous disc: importance of thermal forces
- A Mixed Stirring Mechanism for Debris Discs with Giant and Dwarf Planetary Perturbations
- Destruction of eccentric planetesimals by ram pressure and erosion
- Non-axisymmetric instabilities in discs with imposed zonal flows
- Diagnosing the Clumpy Protoplanetary Disk of the UXor Type Young Star GM Cephei
- Planetesimal formation via the streaming instability in simulations of infall dominated young disks
- Photoevaporation Does Not Create a Pileup of Giant Planets at 1 AU
- Origin of orbits of secondaries in the discovered trans-Neptunian binaries
- Three-dimensional orbit of AC Her determined: Binary-induced truncation cannot explain the large cavity in this post-AGB transition disk
- Semarkona: Lessons for chondrule and chondrite formation
- A Pluto-Charon Sonata III. Growth of Charon from a Circum-Pluto Ring of Debris
- Meteorites and the RNA World: Synthesis of Nucleobases in Carbonaceous Planetesimals and the Role of Initial Volatile Content
- The Formation of the Cold Classical Kuiper Belt by a Short Range Transport Mechanism
- Intricate Relations Among Particle Collision, Relative Motion and Clustering in Turbulent Clouds: Computational Observation and Theory
- TEMPus VoLA: the Timed Epstein Multi-pressure Vessel at Low Accelerations
- Understanding droplet collisions through a model flow: Insights from a Burgers vortex
- Terrestrial Planet Formation in Extra-Solar Planetary Systems
- Laboratory Experiments on the Motion of Dense Dust Clouds
- The resonant drag instability of dust streaming in turbulent protoplanetary disc
- Super-Earth formation in systems with cold giants
- The influence of planetesimal fragmentation on planet formation
- Nonlinear Outcome of Coagulation Instability in Protoplanetary Disks I: First Numerical Study of Accelerated Dust Growth and Dust Concentration at Outer Radii
- Prebiotic Vitamin B Synthesis in Carbonaceous Planetesimals
- Dynamic evolution of major element chemistry in protoplanetary disks and its implications for chondrite formation
- On Secular Gravitational Instability in Vertically Stratified Disks
- Formation of super-Earths and mini-Neptunes from rings of planetesimals
- Multi-frequency analysis of the ALMA and VLA high resolution continuum observations of the substructured disc around CI Tau. Preference for sub-mm-sized low-porosity amorphous carbon grains
- Seeing the unseen: a method to detect unresolved rings in protoplanetary disks
- Connecting planet formation and astrochemistry: C/O and N/O of warm giant planets and Jupiter-analogs
- Curveballs in protoplanetary disks - the effect of the Magnus force on planet formation
- A minimal model for vertical shear instability in protoplanetary accretion disks
- The Limited Role of the Streaming Instability During Moon and Exomoon Formation
- After Runaway: The Trans-Hill Stage of Planetesimal Growth
- Effects of Chemistry on Vertical Dust Motion in Early Protoplanetary Disks
- Collisional Growth Within the Solar System's Primordial Planetesimal Disk and the Timing of the Giant Planet Instability
- Planetesimals on eccentric orbits erode rapidly
- Conglomeration of kilometre-sized planetesimals
- Hidden under a warm blanket: If planets existed in protostellar disks, they would hardly produce observable substructures
- The motion of chondrules and other particles in a protoplanetary disc with temperature fluctuations
- Collisional heating of icy planetesimals. I. Catastrophic collisions
- Strong clumping in global streaming instability simulations with a dusty fluid
- Prograde spin-up during gravitational collapse
- Pebble accretion in self-gravitating protostellar discs
- Stability of Dusty Rings in Protoplanetary Discs
- Properties of outer solar system pebbles during planetesimal formation from meteor observations
- Dust Dynamics in Transitional Disks: Clumping and Disk Recession
- Very-wide-orbit planets from dynamical instabilities during the stellar birth cluster phase
- A Non-Primordial Origin for the Widest Binaries in the Kuiper Belt
- Developments and difficulties in predicting the relative velocities of inertial particles at the small-scales of turbulence
- Turbulent protostellar discs
- Last giant impact on the Neptunian system. Constraints on oligarchic masses in the trans-Saturnian region
- How disc initial conditions sculpt the atmospheric composition of giant planets
- How does the chemical composition of solids influence the formation of planetesimals?
- Resonant drag instabilities for polydisperse dust. II. The streaming and settling instabilities
- Acceleration of tracer and light particles in compressible homogeneous isotropic turbulence
- Planetesimal Dynamics in the Presence of a Giant Planet II: Dependence on Planet Mass and Eccentricity
- Growth of the Moon due to bodies ejected from the Earth
- Dust concentration and chondrule formation
- Asteroids and Comets
- Abundances of ordinary chondrites in thermally evolving planetesimals
- Angular momenta of collided rarefied preplanetesimals
- Morphology and dynamical stability of self-gravitating vortices: Numerical simulations
- Ionizing Protoplanetary Disks in Pebble Collisions
- Planet Formation by Concurrent Collapse
- Probing Inner-Edge of Dead Zones in Protoplanetary Disks with ALMA and Next Generation Very Large Array
- Understanding the trans-Neptunian Solar system: Reconciling the results of serendipitous stellar occultations and the inferences from the cratering record
- Planet Formation
- 10 m interferometry of disks around young stars
- The Dissolution of Planetesimals in Electrostatic Fields
- Growth of asteroids, planetary embryos and Kuiper belt objects by chondrule accretion
- Exploring the conditions for forming planetesimals by the streaming instability and planetary systems by pebble accretion
- SHAMPOO: A stochastic model for tracking dust particles under the influence of non-local disk processes
- Gas permeability and mechanical properties of dust grain aggregates at hyper- and zero-gravity
- Dust-void evolution driven by turbulent dust flux can induce runaway migration of Earth-mass planets
- The black hole masses of extremely luminous radio-WISE selected galaxies
- Dust dynamics in RAMSES -- II. Equilibrium drift velocity distributions of charged dust grains
- Resistive evolution of toroidal field configurations and their relation to magnetic clouds
- Resonant instabilities mediated by drag and electrostatic interactions in laboratory and astrophysical dusty plasmas
- Positive Feedback II: How Dust Coagulation inside Vortices Can Form Planetesimals at Low Metallicity
- On the Efficacy of Ocean Formation with a Primordial Hydrogen Atmosphere
- Effects of Stellar X-ray Photoevaporation on Planetesimal Formation via the Streaming Instability
- Diversity of Exoplanets
- Timescales diagnostics for saving viscous and MHD-driven dusty discs from external photoevaporation
- Effective rates in dilute reaction-advection systems for the annihilation process
- Models and Observational Predictions of Dust Traps in Protoplanetary Discs
- Hypothesis about Enrichment of Solar System
- Nonlinear Evolution of the Unstratified Polydisperse Dust Settling Instability
- Quantitative Nonequilibrium Pathway from Fundamental Physics to the Emergence and Persistence of Exoplanetary Biospheres
- The Onset of Differentiation and Internal Evolution: the case of 21 Lutetia
- Disentangling Planets from Photoelectric Instability in Gas-Rich Optically Thin Dusty Disks
- Considering contact forces during the formation of planetesimals by gravitational collapse: mutual orbits, spin states, and shapes
- Dust Growth in ALMA Rings: II. Dusty Rossby Wave Instability
- A fast tree algorithm for multi-component coagulation equation
- Angular momentum of two collided rarefied preplanetesimals and formation of binaries
- Migration of celestial bodies in the Solar system and in several exoplanetary systems
- The Influence of the Fractal Dimension on Dust Evolution in Protoplanetary Disks
- Rapid Formation of Super-Earths Around Low-Mass Stars
- The Onset of Chaos in Permanently Deformed Binaries from Spin-Orbit and Spin-Spin Coupling
- OSSOS finds an Exponential Cutoff in the Size Distribution of the Cold Classical Kuiper belt
- Dust evolution in protoplanetary disks
- Dust Dynamics in Hall-effected Protoplanetary Disks. I. Background Drift Hall Instability
- Dust-driven vortex cascades originating at water snow regions: A pathway to planetesimal formation
- Inside-Out Planet Formation: VI. Oligarchic Coagulation of Planetesimals from a Pebble Ring?
- Roadmap For Small Bodies Exploration: Theoretical Studies
- A multi-fluid approach for polydisperse pebble accretion: From particles to fluids, establishing the multifluid framework
- A close-encounter method for simulating the dynamics of planetesimals