Protoplanetary Disk Structure With Grain Evolution: the ANDES Model
arXiv:1302.1403 · doi:10.1088/0004-637X/766/1/8
Abstract
We present a self-consistent model of a protoplanetary disk: 'ANDES' ('AccretioN disk with Dust Evolution and Sedimentation'). ANDES is based on a flexible and extendable modular structure that includes 1) a 1+1D frequency-dependent continuum radiative transfer module, 2) a module to calculate the chemical evolution using an extended gas-grain network with UV/X-ray-driven processes surface reactions, 3) a module to calculate the gas thermal energy balance, and 4) a 1+1D module that simulates dust grain evolution. For the first time, grain evolution and time-dependent molecular chemistry are included in a protoplanetary disk model. We find that grain growth and sedimentation of large grains to the disk midplane lead to a dust-depleted atmosphere. Consequently, dust and gas temperatures become higher in the inner disk (R < 50 AU) and lower in the outer disk (R > 50 AU), in comparison with the disk model with pristine dust. The response of disk chemical structure to the dust growth and sedimentation is twofold. First, due to higher transparency a partly UV-shielded molecular layer is shifted closer to the dense midplane. Second, the presence of big grains in the disk midplane delays the freeze-out of volatile gas-phase species such as CO there, while in adjacent upper layers the depletion is still effective. Molecular concentrations and thus column densities of many species are enhanced in the disk model with dust evolution, e.g., CO2, NH2CN, HNO, H2O, HCOOH, HCN, CO. We also show that time-dependent chemistry is important for a proper description of gas thermal balance.
Accepted for publication in ApJ. 25 pages, 20 figures, 1 table
References in corpus (17)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Formation of methyl formate and other organic species in the warm-up phase of hot molecular cores
- Coagulation, fragmentation and radial motion of solid particles in protoplanetary disks
- Gas- and dust evolution in protoplanetary disks
- Particle Stirring in Turbulent Gas Disks: Including Orbital Oscillations
- Closed-form expressions for particle relative velocities induced by turbulence
- Structure and evolution of pre-main sequence circumstellar disks
- Dust size distributions in coagulation/fragmentation equilibrium: Numerical solutions and analytical fits
- Photoprocesses in protoplanetary disks
- Constraints on the Radial Variation of Grain Growth in the AS 209 Circumstellar Disk
- [CII] 158m Emission and Metallicity in PDRs
- Planetesimal formation around the snow line in MRI-driven turbulent protoplanetary disks
- Line Emission from Gas in Optically Thick Dust Disks around Young Stars
- Turbulence in weakly-ionized proto-planetary disks
- Dust Coagulation and Settling in Layered Protoplanetary Disks
- Large grains in disks around young stars: ATCA observations of WW Cha, RU Lup, and CS Cha
- The vertical structure of T Tauri accretion disks II. Physical conditions in the disk
Cited by in corpus (62)
- Consistent dust and gas models for protoplanetary disks. I. Disk shape, dust settling, opacities, and PAHs
- Chemistry of Dark Clouds: Databases, Networks, and Models
- Complex organic molecules in protoplanetary disks
- Retrieving scattering clouds and disequilibrium chemistry in the atmosphere of HR 8799e
- Magneto-thermal Disk Wind from Protoplanetary Disks
- Hydrocarbon emission rings in protoplanetary disks induced by dust evolution
- Sulfur chemistry in protoplanetary disks: CS and H2CS
- Cometary ices in forming protoplanetary disc midplanes
- Chemo-dynamical deuterium fractionation in the early solar nebula: The origin of water on Earth and in asteroids and comets
- Chemistry in disks. XI. Sulfur-bearing species as tracers of protoplanetary disk physics and chemistry: the DM Tau case
- Methanol Along the Path from Envelope to Protoplanetary Disc
- Radiation Magnetohydrodynamics In Global Simulations Of Protoplanetary Disks
- Volatile depletion in the TW Hydrae disk atmosphere
- Chemistry in Disks. IX. Observations and modeling of HCO+ and DCO+ in DM Tau
- Efficiency of thermal relaxation by radiative processes in protoplanetary discs: constraints on hydrodynamic turbulence
- Early Planet Formation in Embedded Disks (eDisk). II. Limited Dust Settling and Prominent Snow Surfaces in the Edge-on Class I Disk IRAS 04302+2247
- The chemistry of disks around T Tauri and Herbig Ae/Be stars
- Chemical Signatures of the FU Ori Outbursts
- The composition of the protosolar disk and the formation conditions for comets
- The chemistry of episodic accretion in embedded objects. 2D radiation thermo-chemical models of the post-burst phase
- Gas mass tracers in protoplanetary disks: CO is still the best
- Candidate Water Vapor Lines to Locate the HO Snowline through High-Dispersion Spectroscopic Observations II. The Case of a Herbig Ae Star
- Gas and dust temperature in pre-stellar cores revisited: New limits on cosmic-ray ionization rate
- Candidate Water Vapor Lines to Locate the HO Snowline through High-Dispersion Spectroscopic Observations I. The Case of a T Tauri Star
- Gravitational instabilities in a protosolar-like disc I: dynamics and chemistry
- Interpreting high spatial resolution line observations of planet-forming disks with gaps and rings -- The case of HD 163296
- Shielding by Water and OH in FUV and X-ray Irradiated Protoplanetary Disks
- AB Aur, a Rosetta stone for studies of planet formation (I): chemical study of a planet-forming disk
- X-ray radiative transfer in protoplanetary disks - The role of dust and X-ray background fields
- Reducing the complexity of chemical networks via interpretable autoencoders
- Review of scientific topics for Millimetron space observatory
- Complex organic molecules along the accretion flow in isolated and externally irradiated protoplanetary disks
- Surface chemistry in photodissociation regions
- Signatures of warm carbon monoxide in protoplanetary discs observed with Herschel SPIRE
- Dust Rotational Dynamics in C-shocks: Rotational Disruption of Nanoparticles by Stochastic Mechanical Torques and Spinning Dust Emission
- Photophoresis on particles hotter/colder than the ambient gas in the free molecular flow
- FUV Irradiated Disk Atmospheres: Ly and the Origin of Hot H Emission
- Different degrees of nitrogen and carbon depletion in the warm molecular layers of protoplanetary disks
- Improving the thin-disk models of circumstellar disk evolution. The 2+1-dimensional model
- FUV Irradiation and the Heat Signature of Accretion in Protoplanetary Disk Atmospheres
- Protoplanetary disks: Sensitivity of the chemical composition to various model parameters
- A Possible Mechanism for Overcoming the Electrostatic Barrier Against Dust Growth in Protoplanetary disks
- Spinning dust emission from circumstellar disks and its role in excess microwave emission
- CLIcK: a Continuum and Line fItting Kit for circumstellar disks
- Modeling rotational disruption of grains and microwave emission from spinning dust in AGB envelopes
- Machine learning-accelerated chemistry modeling of protoplanetary disks
- Using HCO isotopologues as tracers of gas depletion in protoplanetary disk gaps
- The gas disk: Evolution and chemistry
- Dynamics of magnetic flux tubes and IR-variability of Young Stellar Objects
- Modelling thermochemical processes in protoplanetary disks I: numerical methods
- Density Functional Theory Calculations on the Interstellar Formation of Biomolecules
- Dust rotational dynamics in non-stationary shock: rotational disruption of nanoparticles by stochastic mechanical torques and spinning dust emission
- Catalytic role of HI in the interstellar synthesis of complex organic molecule
- Molecular inventory of a young eruptive star's environment -- Case study of the classical FU Orionis star V1057 Cyg
- Molecules with ALMA at Planet-forming Scales (MAPS) III: Characteristics of Radial Chemical Substructures
- Dancing on the Grain: Variety of CO and its isotopologue fluxes as a result of surface chemistry and T Tauri disk properties
- Interpreting the atmospheric composition of exoplanets: sensitivity to planet formation assumptions
- The physical and chemical properties of planet forming disks
- Linear Analysis of the Nonaxisymmetric Secular Gravitational Instability
- Protoplanetary Disk Chemistry
- Impact of Size-dependent Grain Temperature on Gas-Grain Chemistry in Protoplanetary Disks: the case of low mass star disks
- Chemical modelling of FU Ori protoplanetary disks