The long-term evolution of photoevaporating transition discs with giant planets
arXiv:1509.04278 · doi:10.1093/mnras/stv2102
Abstract
Photo-evaporation and planet formation have both been proposed as mechanisms responsible for the creation of a transition disc. We have studied their combined effect through a suite of 2d simulations of protoplanetary discs undergoing X-ray photoevaporation with an embedded giant planet. In a previous work we explored how the formation of a giant planet triggers the dispersal of the inner disc by photo-evaporation at earlier times than what would have happened otherwise. This is particularly relevant for the observed transition discs with large holes and high mass accretion rates that cannot be explained by photo-evaporation alone. In this work we significantly expand the parameter space investigated by previous simulations. In addition, the updated model includes thermal sweeping, needed for studying the complete dispersal of the disc. After the removal of the inner disc the disc is a non accreting transition disc, an object that is rarely seen in observations. We assess the relative length of this phase, to understand if it is long lived enough to be found observationally. Depending on the parameters, especially on the X-ray luminosity of the star, we find that the fraction of time spent as a non-accretor greatly varies. We build a population synthesis model to compare with observations and find that in general thermal sweeping is not effective enough to destroy the outer disc, leaving many transition discs in a relatively long lived phase with a gas free hole, at odds with observations. We discuss the implications for transition disc evolution. In particular, we highlight the current lack of explanation for the missing non-accreting transition discs with large holes, which is a serious issue in the planet hypothesis.
11 pages, 5 figures; accepted by MNRAS
References in corpus (23)
- Protoplanetary Disk Structures in Ophiuchus
- Gas- and dust evolution in protoplanetary disks
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Dust filtration at gap edges: Implications for the spectral energy distributions of discs with embedded planets
- Photoevaporation of protoplanetary discs I: hydrodynamic models
- LkH 330: Evidence for dust clearing through resolved submillimeter imaging
- Accretion of Jupiter-mass Planets in the Limit of Vanishing Viscosity
- Dust flow in gas disks in the presence of embedded planets
- X-ray irradiated protoplanetary disk atmospheres I: Predicted emission line spectrum and photoevaporation
- Disk evolution in the solar neighborhood. I Disk frequencies from 1 to 100 Myr
- The Migration of Gap-Opening Planets is not Locked to Viscous Disk Evolution
- Migration of massive planets in accreting disks
- On the gas content of transitional disks: a VLT/X-Shooter study of accretion and winds
- Can giant planets form by gravitational fragmentation of discs?
- Gas structure inside dust cavities of transition disks: Oph IRS 48 observed by ALMA
- Discovery of H-alpha Emission from the Close Companion Inside the Gap of Transitional Disk HD142527
- The VLT/NaCo large program to probe the occurrence of exoplanets and brown dwarfs at wide orbits: II- Survey description, results and performances
- Accretion onto Planetary Mass Companions of Low-Mass Young Stars
- Fast Radial Flows in Transition Disk Holes
- Comparison of the dust and gas radial structure in the transition disk [PZ99] J160421.7-213028
- Accreting planets as dust dams in `transition' discs
- The Mdot - M* relation of pre-main sequence stars: a consequence of X-ray driven disc evolution
- The Transitional Disk around IRAS 04125+2902
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- The origin and evolution of transition discs: successes, problems and open questions
- A dust and gas cavity in the disc around CQ Tau revealed by ALMA
- Grand challenges in protoplanetary disc modelling
- The evolution of photo-evaporating viscous discs in binaries
- Influence of planetary gas accretion on the shape and depth of gaps in protoplanetary discs
- The Frequency Of Binary Star Interlopers Amongst Transitional Discs
- Effects of inclined star-disk encounter on protoplanetary disk size
- Characterization of low-mass companion HD 142527 B
- Constraining planet formation around 6-8 stars
- Exploring the possibility of Peter Pan discs across stellar mass
- Rapid radiative clearing of protoplanetary discs
- Giant planet migration during the disc dispersal phase
- Chandra Characterization of X-ray Emission in the Young F-Star Binary System HD 113766
- Photoevaporation Does Not Create a Pileup of Giant Planets at 1 AU
- DESTINY: Database for the Effects of STellar encounters on dIsks and plaNetary sYstems
- Disk dissipation, giant planet formation and star-formation-rate fluctuations in the past three-million-year history of Gould's Belt
- The Dispersal of Planet-forming discs: Theory confronts Observations