Radiation-Hydrodynamic Models of X-Ray & EUV Photoevaporating Protoplanetary Discs
arXiv:0909.4309 · doi:10.1111/j.1365-2966.2009.15771.x
Abstract
(Abridged) We present the first radiation-hydrodynamic model of a protoplanetary disc irradiated with an X-EUV spectrum. In a model where the total ionizing luminosity is divided equally between X-ray and EUV luminosity, we find a photoevaporation rate of 1.4e-8 M_sun/yr, which is two orders of magnitude greater than the case of EUV photoevaporation alone. Thus it is clear that the X-rays are the dominant driving mechanism for photoevaporation. This can be understood inasmuch as X-rays are capable of penetrating much larger columns (~1e22 cm^-2) and can thus effect heating in denser regions and at larger radius than the EUV can. The radial extent of the launching region of the X-ray heated wind is 1-70AU compared with the pure EUV case where the launch region is concentrated around a few AU. When we couple our wind mass-loss rates with models for the disc's viscous evolution, we find that, as in the pure EUV case, there is a photoevaporative switch, such that an inner hole develops at ~ 1 AU at the point that the accretion rate in the disc drops below the wind mass loss rate. At this point, the remaining disc material is quickly removed in the final 15-20% of the disc's lifetime. This is consistent with the 1e5 yr transitional timescale estimated from observations of T-Tauri stars. We also caution that although our mass-loss rates are high compared to some accretion rates observed in young stars, our model has a rather large X-ray luminosity of 2e30 erg/s; further modeling is required in order to investigate the evolutionary implications of the large observed spread of X-ray luminosities in T-Tauri stars.
16 pages, 14 figures, accepted for publication in MNRAS
References in corpus (25)
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Accretion in the Rho-Oph pre-main sequence stars
- Dust filtration at gap edges: Implications for the spectral energy distributions of discs with embedded planets
- Photoevaporation of protoplanetary discs I: hydrodynamic models
- On the Diversity of the Taurus Transitional Disks: UX Tau A & Lk Ca 15
- Demographics of Transition Objects
- X-ray irradiated protoplanetary disk atmospheres I: Predicted emission line spectrum and photoevaporation
- X-ray irradiated protoplanetary disk atmospheres II: Predictions from models in hydrostatic equilibrium
- Evidence for Disk Photoevaporation Driven by the Central Star
- Neon Fine-Structure Line Emission By X-ray Irradiated Protoplanetary Disks
- Formation of Water in the Warm Atmospheres of Protoplanetary Disks
- Very Low-Mass Objects in the Coronet Cluster: The Realm of the Transition Disks
- Dust Coagulation and Settling in Layered Protoplanetary Disks
- [NeII] emission line profiles from photoevaporative disc winds
- Unveiling the Cygnus OB2 stellar population with Chandra
- The Masses of Transition Circumstellar Disks: Observational Support for Photoevaporation Models
- High-resolution Spectroscopy of [Ne II] Emission from TW Hya
- Atomic Diagnostics of X-ray Irradiated Protoplanetary Disks
- X-ray Photoevaporation-starved T Tauri Accretion
- From discs to planetesimals I: evolution of gas and dust discs
- The photophoretic sweeping of dust in transient protoplanetary disks
- The transition disc frequency in M stars
- High Resolution Spectroscopy of [NeII] Emission from AA Tau and GM Aur
- Results from DROXO. II. - [Ne II] and X-ray emission from Rho Ophiuchi young stellar objects
- X-rays from young stars - a summary of highlights from the XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
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- Protoplanetary Disks and Their Evolution
- Kepler planets: a tale of evaporation
- Resolved Images of Large Cavities in Protoplanetary Transition Disks
- Dynamics of Protoplanetary Disks
- The Disk Substructures at High Angular Resolution Project (DSHARP): II. Characteristics of Annular Substructures
- Planetary evaporation by UV & X-ray radiation: basic hydrodynamics
- On the theory of disc photoevaporation
- Transitional and Pre-Transitional disks: Gap Opening by Multiple Planets?
- Unveiling the Structure of Pre-Transitional Disks
- Protoplanetary disc evolution and dispersal: the implications of X-ray photoevaportion
- The coronal X-ray - age relation and its implications for the evaporation of exoplanets
- Towards a Global Evolutionary Model of Protoplanetary Disks
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- Evolution of Protoplanetary Discs with Magnetically Driven Disc Winds
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: II. Full 3D Simulations toward the Outer Disk
- Magneto-thermal Disk Wind from Protoplanetary Disks
- On the water delivery to terrestrial embryos by ice pebble accretion
- Global Simulations of the Inner Regions of Protoplanetary Disks with Comprehensive Disk Microphysics
- Protoplanetary Disk Winds by Magnetorotational Instability : Formation of an Inner Hole and a Crucial Assist for Planet Formation
- The Impact of Dust Evolution and Photoevaporation on Disk Dispersal
- Steady state of dust distributions in disk vortices: Observational predictions and applications to transitional disks
- The dispersal of protoplanetary discs I: A new generation of X-ray photoevaporation models
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- Imaging of a Transitional Disk Gap in Reflected Light: Indications of Planet Formation Around the Young Solar Analog LkCa 15
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- VLT-CRIRES Survey of Rovibrational CO Emission from Protoplanetary Disks
- On the structure of the transition disk around TW Hya
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- Global Simulations of Protoplanetary Disk Outflows with Coupled Non-ideal Magnetohydrodynamics and Consistent Thermochemistry
- Habitability of Terrestrial-Mass Planets in the HZ of M Dwarfs. I. H/He-Dominated Atmospheres
- Homogeneous Analysis of the Dust Morphology of Transition Disks Observed with ALMA: Investigating dust trapping and the origin of the cavities
- Connection between jets, winds and accretion in T Tauri stars: the X-shooter view
- The Photoevaporative Wind from the Disk of TW Hya
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- Disk-planets interactions and the diversity of period ratios in Kepler's multi-planetary systems
- The time evolution of dusty protoplanetary disc radii: observed and physical radii differ
- X-Shooter spectroscopy of young stellar objects: V - Slow winds in T Tauri stars
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- The propagation of Lyman-alpha in evolving protoplanetary disks
- Spitzer Spectroscopy of the Transition Object TW Hya
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- Demographics of Transition Discs in Ophiuchus and Taurus
- Herschel-PACS observation of the 10 Myr old T Tauri disk TW Hya: Constraining the disk gas mass
- The origin and evolution of transition discs: successes, problems and open questions
- Evolutionary Tracks of Trapped, Accreting Protoplanets: the Origin of the Observed Mass-Period Relation
- Radiation hydrodynamics simulations of photoevaporation of protoplanetary disks II: Metallicity dependence of UV and X-ray photoevaporation
- Hydrodynamic Photoevaporation of Protoplanetary Disks with Consistent Thermochemistry
- The Nature of Transition Circumstellar Disks II. Southern Molecular Clouds
- Disc Clearing of Young Stellar Objects: Evidence for Fast Inside-out Dispersal
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- The link between disc dispersal by photoevaporation and the semi-major axis distribution of exoplanets
- Blueshifted [OI] lines from protoplanetary discs: the smoking gun of X-ray photoevaporation
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- The dispersal of protoplanetary discs. II: Photoevaporation models with observationally derived irradiating spectra
- The Sizes and Depletions of the Dust and Gas Cavities in the Transitional Disk J160421.7-213028
- Particle transport in evolving protoplanetary disks: Implications for results from Stardust
- Radiation Hydrodynamics Simulations of Photoevaporation of Protoplanetary Disks by Ultra Violet Radiation: Metallicity Dependence
- Do Giant Planets Survive Type II Migration?
- Transitional disks and their origins: an infrared spectroscopic survey of Orion A
- Two timescale dispersal of magnetized protoplanetary disks
- Dispersal of protoplanetary disks by the combination of magnetically driven and photoevaporative winds
- Evolution of X-ray and FUV Disk-Dispersing Radiation Fields
- The Similarity of Broad Iron Lines in X-ray Binaries and Active Galactic Nuclei
- Irradiation-driven escape of primordial planetary atmospheres II. Evaporation efficiency of sub-Neptunes through hot Jupiters
- From Birth to Death of Protoplanetary Disks: Modeling Their Formation, Evolution, and Dispersal
- Disk Dispersal: Theoretical Understanding and Observational Constraints
- Low EUV Luminosities Impinging on Protoplanetary Disks
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- The first multi-dimensional view of mass loss from externally FUV irradiated protoplanetary discs
- Fingerprints of giant planets in the composition of solar twins
- Disks and Outflows in CO Rovibrational Emission from Embedded, Low-Mass Young Stellar Objects
- Time evolution of snow regions and planet traps in an evolving protoplanetary disk
- Sub-arcsecond [FeII] spectro-imaging of the DG Tau jet: Periodic bubbles and a dusty disk wind?
- Most super-Earths formed by dry pebble accretion are less massive than 5 Earth masses
- Photoelectric cross-sections of gas and dust in protoplanetary disks
- Unbiased mm-wave Line Surveys of TW Hya and V4046 Sgr: The Enhanced C2H and CN Abundances of Evolved Protoplanetary Disks
- WL 17: A Young Embedded Transition Disk
- The imprint of photoevaporation on edge-on discs
- Dead, Undead and Zombie Zones in Protostellar Disks as a Function of Stellar Mass
- Formation of circumbinary planets in a dead zone
- TPCI: The PLUTO-CLOUDY Interface
- Photoevaporative Dispersal of Protoplanetary Disks around Evolving Intermediate-mass Stars
- Grand challenges in protoplanetary disc modelling
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- Three-dimensional Simulations of Magnetospheric Accretion in a T Tauri Star: Accretion and Wind Structures Just Around Star
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- Accreting planets as dust dams in `transition' discs
- Irradiation of Astrophysical Objects - SED and Flux Effects on Thermally Driven Winds
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- Hydrodynamical simulations of protoplanetary disks including irradiation of stellar photons. I. Resolution study for Vertical Shear Instability (VSI)
- The long-term evolution of photoevaporating transition discs with giant planets
- Circumstellar disks and planets. Science cases for next-generation optical/infrared long-baseline interferometers
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- Connecting X-ray and Infrared Variability among Young Stellar Objects: Ruling out potential sources of disk fluctuations
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- Evolution of circumstellar discs in young star-forming regions
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- The imprint of X-ray photoevaporation of planet-forming discs on the orbital distribution of giant planets -- II. Theoretical predictions
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- Modelling thermochemical processes in protoplanetary disks I: numerical methods
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- DESTINY: Database for the Effects of STellar encounters on dIsks and plaNetary sYstems
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- The interplay between forming planets and photoevaporating discs II: Wind-driven gas redistribution
- The effect of stellar evolution on dispersal of protoplanetary disks: Disk fraction in star-forming regions
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- The spectral energy distribution of protoplanetary diss around Massive Young Stellar Objects
- Effects of Stellar X-ray Photoevaporation on Planetesimal Formation via the Streaming Instability
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- The Dispersal of Planet-forming discs: Theory confronts Observations
- Rapid and Predictive Planet Population Synthesis Model (RAPPS) I. Upgraded model and resulting synthetic populations
- Dispersal of protoplanetary discs: How stellar properties and the local environment determine the pathway of evolution
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- Modelling the secular evolution of proto-planetary disc dust sizes -- A comparison between the viscous and magnetic wind case