Evolution of protoplanetary disks: Constraints from DM Tauri and GM Aurigae
arXiv:astro-ph/0506496 · doi:10.1051/0004-6361:20041905
Abstract
We present a one-dimensional model of the formation and viscous evolution of protoplanetary disks. The formation of the early disk is modeled as the result of the gravitational collapse of an isothermal molecular cloud. The disk's viscous evolution is integrated according to two parameterizations of turbulence: The classical representation and a parameterization, representative of non-linear turbulence driven by the keplerian shear. We apply the model to DM Tau and GM Aur, two classical T-Tauri stars with relatively well-characterized disks, retrieving the evolution of their surface density with time. We perform a systematic Monte-Carlo exploration of the parameter space (i.e. values of the - parameters, and of the temperature and rotation rate in the molecular cloud) to find the values that are compatible with the observed disk surface density distribution, star and disk mass, age and present accretion rate. We find that the observations for DM Tau require or . For GM Aur, we find that the turbulent viscosity is such that or . These relatively large values show that an efficient turbulent diffusion mechanism is present at distances larger than AU. This is to be compared to studies of the variations of accretion rates of T-Tauri stars versus age that mostly probe the inner disks, but also yield values of . We show that the mechanism responsible for turbulent diffusion at large orbital distances most probably cannot be convection because of its suppression at low optical depths.
24 pages, 22 figures, paper accepted for publication in A&A
References in corpus (2)
Cited by in corpus (194)
- Protoplanetary Disks and Their Evolution
- Protoplanetary Disk Structures in Ophiuchus
- Gas- and dust evolution in protoplanetary disks
- Dynamics of Protoplanetary Disks
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- High Resolution Submillimeter Constraints on Circumstellar Disk Structure
- Protoplanetary Disk Structures in Ophiuchus II: Extension to Fainter Sources
- Accretion in the Rho-Oph pre-main sequence stars
- On the Role of Disks in the Formation of Stellar Systems: A Numerical Parameter Study of Rapid Accretion
- Structure and evolution of pre-main sequence circumstellar disks
- PROSAC: A Submillimeter Array Survey of Low-Mass Protostars. I. Overview of Program: Envelopes, Disks, Outflows and Hot Cores
- Time-Evolution of Viscous Circumstellar Disks due to Photoevaporation by FUV, EUV and X-ray Radiation from the Central Star
- Hydrodynamic turbulence cannot transport angular momentum effectively in astrophysical disks
- Chemical enrichment of giant planets and discs due to pebble drift
- The chemical history of molecules in circumstellar disks. I. Ices
- Evolution of Protoplanetary Discs with Magnetically Driven Disc Winds
- Fossilized condensation lines in the Solar System protoplanetary disk
- Bifurcation of planetary building blocks during Solar System formation
- The New Generation Planetary Population Synthesis (NGPPS). IV. Planetary systems around low-mass stars
- The New Generation Planetary Population Synthesis (NGPPS). I. Bern global model of planet formation and evolution, model tests, and emerging planetary systems
- Global Models for the Evolution of Embedded, Accreting Protostellar Disks
- Hydrocarbon emission rings in protoplanetary disks induced by dust evolution
- Planet formation bursts at the borders of the dead zone in 2D numerical simulations of circumstellar disks
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- Dust retention in protoplanetary disks
- The radial dependence of pebble accretion rates: A source of diversity in planetary systems I. Analytical formulation
- Jupiter's composition: sign of a (relatively) late formation in a chemically evolved protosolar disk
- From stellar nebula to planets: the refractory components
- The chemical history of molecules in circumstellar disks. II. Gas-phase species
- Contemporary formation of early solar system planetesimals at two distinct radial locations
- Global Models of Planet Formation and Evolution
- On the Dynamics and Evolution of Gravitational Instability-Dominated Disks
- Elemental ratios in stars vs planets
- A remnant planetary core in the hot-Neptune desert
- The Delivery of Water During Terrestrial Planet Formation
- Accretion in protoplanetary disks: the imprint of core properties
- The Mass Budget of Planet Forming Discs: Isolating the Epoch of Planetesimal Formation
- Short dissipation times of proto-planetary discs - an artifact of selection effects?
- Outward Migration of Jupiter and Saturn in Evolved Gaseous Disks
- Accretion and destruction of planetesimals in turbulent disks
- The Spitzer c2d Survey of Weak-Line T Tauri Stars. III. The Transition from Primordial Disks to Debris Disks
- Evidence for the start of planet formation in a young circumstellar disk
- Secular evolution of viscous and self-gravitating circumstellar discs
- Microlensing Results Challenge the Core Accretion Runaway Growth Scenario for Gas Giants
- The New Generation Planetary Population Synthesis (NGPPS). III. Warm super-Earths and cold Jupiters: A weak occurrence correlation, but with a strong architecture-composition link
- A New Hybrid N-Body-Coagulation Code for the Formation of Gas Giant Planets
- Formation and composition of planets around very low mass stars
- Planetary population synthesis
- Early evolution of the solar accretion disk inferred from Cr-Ti-O isotopes in individual chondrules
- Heterogeneous distribution of Al-26 at the birth of the Solar System
- Protoplanetary Disk Structure With Grain Evolution: the ANDES Model
- Planet Formation with Migration
- Volatile snowlines in embedded disks around low-mass protostars
- Observations of Solids in Protoplanetary Disks
- On the physical nature of accretion disc viscosity
- Gas composition of main volatile elements in protoplanetary discs and its implication for planet formation
- Cloudlet capture by Transitional Disk and FU Orionis stars
- From stellar nebula to planetesimals
- Growth and migration of solids in evolving protostellar disks I: Methods and Analytical tests
- Chemistry in Disks VIII: the CS molecule as an analytic tracer of turbulence in disks
- Carbon-rich planet formation in a solar composition disk
- Have proto-planetary discs formed planets?
- The Masses of Transition Circumstellar Disks: Observational Support for Photoevaporation Models
- Probing Protoplanetary Disks with Silicate Emission: Where is the silicate emission zone?
- Particle transport in evolving protoplanetary disks: Implications for results from Stardust
- Crystalline silicates as a probe of disk formation history
- Coupling dynamical and collisional evolution of small bodies II : Forming the Kuiper Belt, the Scattered Disk and the Oort Cloud
- RV-detected planets around M dwarfs: Challenges for core accretion models
- Measuring the ratio of the gas and dust emission radii of protoplanetary disks in the Lupus star-forming region
- Revisiting the pre-main-sequence evolution of stars I. Importance of accretion efficiency and deuterium abundance
- From Birth to Death of Protoplanetary Disks: Modeling Their Formation, Evolution, and Dispersal
- Making the Planetary Material Diversity During the Early Assembling of the Solar System
- Diverse outcomes of planet formation and composition around low-mass stars and brown dwarfs
- Predicted diversity in water content of terrestrial exoplanets orbiting M dwarfs
- Stability of quasi-Keplerian shear flow in a laboratory experiment
- The New Generation Planetary Population Synthesis (NGPPS). V. Predetermination of planet types in global core accretion models
- The composition of the protosolar disk and the formation conditions for comets
- Pebbles versus planetesimals: the outcomes of population synthesis models
- The Growth & Migration of Jovian Planets in Evolving Protostellar Disks with Dead Zones
- Global Gravitational Instabilities in Discs with Infall
- Embedded protostellar disks around (sub-)solar protostars. I. Disk structure and evolution
- Embedded protostellar disks around (sub-)solar stars. II. Disk masses, sizes, densities, temperatures and the planet formation perspective
- Origin of hydrogen isotopic variations in chondritic water and organics
- Jupiter's formation in the vicinity of the amorphous ice snowline
- The measured compositions of Uranus and Neptune from their formation on the CO iceline
- Fingerprints of the protosolar cloud collapse in the Solar System II: Nucleosynthetic anomalies in meteorites
- On the Formation and Chemical Composition of Super Earths
- The New Generation Planetary Population Synthesis (NGPPS). VI. Introducing KOBE: Kepler Observes Bern Exoplanets. Theoretical perspectives on the architecture of planetary systems: Peas in a pod
- Rocklines as Cradles for Refractory Solids in the Protosolar Nebula
- Where are the hot ion lines in classical T Tauri stars formed?
- A framework for the architecture of exoplanetary systems. I. Four classes of planetary system architecture
- The Imprint of the Protoplanetary Disk in the Accretion of Super-Earth Envelopes
- From Disks to Planets
- The growth of planets by pebble accretion in evolving protoplanetary discs
- Pebble accretion at the origin of water in Europa
- JWST Observations of Young protoStars (JOYS): overview of program and early results
- Turbulent Linewidths in Protoplanetary Disks: Predictions from Numerical Simulations
- Influence of grain growth on the thermal structure of protoplanetary discs
- The Co-evolution of Disk and Star in Embedded Stages: The Case of the Very Low-mass Protostar
- Structure Formation in a Young Protoplanetary Disk by a Magnetic Disk Wind
- Sub-Keplerian accretion onto circumstellar disks
- Formation and evolution of a protoplanetary disk: combining observations, simulations and cosmochemical constraints
- The Preservation of Super Earths and the Emergence of Gas Giants after Their Progenitor Cores have Entered the Pebble Isolation Phase
- Population study on MHD wind-driven disc evolution -- Confronting theory and observation
- Wind-accretion disks in wide binaries, second generation protoplanetary disks and accretion onto white dwarfs
- Formation of Comets
- N-body simulations of planet formation via pebble accretion II. How various giant planets form
- The influence of infall on the properties of protoplanetary discs
- Disc-mass distribution in star-disc encounters
- Dust clearing by radial drift in evolving protoplanetary discs
- Missing water in Class I protostellar disks
- Disc population synthesis: Decrease in the solid mass reservoir through pebble drift
- Early planet formation in embedded protostellar disks: Setting the stage for the first generation of planetesimals
- GW Ori: circumtriple rings and planets
- Inside-Out Planet Formation. IV. Pebble Evolution and Planet Formation Timescales
- Gap opening beyond dead zones by photoevaporation
- Towards a population synthesis of discs and planets. II. Confronting disc models and observations at the population level
- On the migration of two planets in a disc and the formation of mean motion resonances
- Imprint of planet formation in the deep interior of the Sun
- Effects of photophoresis on the evolution of transitional circumstellar disks
- A framework for the architecture of exoplanetary systems. II. Nature versus nurture: Emergent formation pathways of architecture classes
- Collisional Growth of Icy Dust Aggregates in Disk Formation Stage: Difficulties for Planetesimal Formation via Direct Collisional Growth outside the Snowline
- Evolution of the reservoirs of volatiles in the protosolar nebula
- Testing protostellar disk formation models with ALMA observations
- New insights on Saturn's formation from its nitrogen isotopic composition
- Probing the presence of planets in transition discs' cavities via warps: the case of TW Hya
- Resolved molecular line observations reveal an inherited molecular layer in the young disk around TMC1A
- Pebble accretion in class 0/I YSOs as a possible pathway for early planet formation
- Linking planetesimal and dust content in protoplanetary disks via a local toy model
- An inflationary disk phase to explain extended protoplanetary dust disks
- Astro & cosmo-chemical consequences of accretion bursts I: the D/H ratio of water
- Time evolution of a viscous protoplanetary disk with a free geometry: toward a more self-consistent picture
- Key Atmospheric Signatures for Identifying the Source Reservoirs of Volatiles in Uranus and Neptune
- Fingerprints of the protosolar cloud collapse in the Solar System I: Distribution of presolar short-lived Al
- The possible formation of Jupiter from supersolar gas
- The interplay between pebble and planetesimal accretion in population synthesis models and its role in giant planet formation
- Photophoretic transport of hot minerals in the solar nebula
- Thermal processing of primordial pebbles in evolving protoplanetary disks
- The applicability of the viscous α-parameterization of gravitational instability in circumstellar disks
- The relation between the Mass Accretion Rate and the Disk Mass in Class I Protostars
- Constraints on PDS 70 b and c from the dust continuum emission of the circumplanetary discs considering in situ dust evolution
- CAI formation in the early Solar System
- Toward a Population Synthesis of Disks and Planets I. Evolution of Dust with Entrainment in Winds and Radiation Pressure
- Panchromatic Imaging of a Transitional Disk: The Disk of GM Aur in Optical and FUV Scattered Light
- MRI-driven angular momentum transport in protoplanetary disks
- Maximum Temperatures in Evolving Protoplanetary Discs and Composition of Planetary Building Blocks
- Protostellar disks subject to infall: a one-dimensional inviscid model and comparison with ALMA observations
- Dead zones in protostellar discs: the case of Jet Emitting Discs
- The link between infall location, early disc size, and the fraction of self-gravitationally fragmenting discs
- Star and Planet Formation with ALMA: an Overview
- Shear-driven instabilities in Hall-MHD plasmas
- Depletion of Moderately Volatile Elements by Open-System loss in the Early Solar Nebula
- The effect of Jupiter on the CAI storage problem
- Building protoplanetary disks from the molecular cloud: redefining the disk timeline
- Effect of Different Angular Momentum Transport mechanisms on the Distribution of Water in Protoplanetary Disks
- Structure of CB 26 Protoplanetary Disk Derived from Millimeter Dust Continuum Maps
- Radial Drift and Concurrent Ablation of Boulder-Sized Objects
- Planet formation in chemically diverse and evolving discs -- I. Composition of planetary building blocks
- Infall and Disk Processes - the Message from Meteorites
- Global Modeling of Nebulae With Particle Growth, Drift, and Evaporation Fronts. III. Redistribution of Refractories and Volatiles
- Planetesimal formation via the streaming instability in simulations of infall dominated young disks
- DIPSY: A new Disc Instability Population SYnthesis, II. The Populations of Companions Formed Through Disc Instability
- Turbulent Transport of Dust Particles in Protostellar Disks: The Effect of Upstream Diffusion
- The role of density perturbation on planet formation by pebble accretion
- Calibrated Gas Accretion and Orbital Migration of Protoplanets in 1D Disc Models
- The Role of Angular Momentum Transport in Establishing the Accretion Rate--Protostellar Mass Correlation
- Protostellar disk accretion in turbulent filaments
- The Snow Border
- Spatially resolving the chemical composition of the planet building blocks
- Physicochemical Controls on the Compositions of the Earth and Planets
- Influence of the C/O ratio on titanium and vanadium oxides in protoplanetary disks
- Evolution of a Viscous Protoplanetary Disk with Convectively Unstable Regions. II. Accretion Regimes and Long-Term Dynamics
- Kozai-Lidov oscillations triggered by a tilt instability of detached circumplanetary discs
- A "no-drift" runaway pile-up of pebbles in protoplanetary disks II. Characteristics of the resulting planetesimal belt
- Protoplanetary disks around magnetized young stars with large-scale magnetic fields I: Steady-state solutions
- DIPSY: A new Disc Instability Population SYnthesis, I. Modeling, evolution of individual systems, and tests
- Growth of a Protostar and a Young Circumstellar Disk with High Mass Accretion Rate onto the Disk
- The PAIRS project: a global formation model for planets in binaries. I. Effect of disc truncation on the growth of S-type planets
- Non-equilibrium condensation of the first Solar System solids
- The influence of dust growth on the observational properties of circumplanetary discs
- Dust distribution around low-mass planets on converging orbits
- Journey of complex organic molecules: Formation and transport in protoplanetary disks
- Halting Migration in Magnetospherically Sculpted Protoplanetary Disks
- Origin of compact exoplanetary systems during disk infall
- Forming Earth-like and Low-Mass Rocky Exoplanets Through Pebble and Planetesimal Accretion
- On the Efficacy of Ocean Formation with a Primordial Hydrogen Atmosphere
- Dust photophoretic transport around a T Tauri star: Implications for comets composition
- Angular momentum distributions for observed and modeled exoplanetary systems
- Delivery of complex organic molecules to the system of Jupiter
- Rapid and Predictive Planet Population Synthesis Model (RAPPS) I. Upgraded model and resulting synthetic populations
- Protoplanetary disk formation from the collapse of a prestellar core
- Which molecule traces what: chemical diagnostics of protostellar sources
- Early Initiation of Inner Solar System Formation at Dead-Zone Inner Edge
- A semi-analytical model of the outer structure of protoplanetary discs formed by the collapse of a rotating molecular cloud