Rapid destruction of protoplanetary discs due to externalphotoevaporation in star-forming regions
arXiv:1902.11094 · doi:10.1093/mnras/stz606
Abstract
We analyse N-body simulations of star-forming regions to investigate the effects of external far and extreme ultra-violet photoevaporation from massive stars on protoplanetary discs. By varying the initial conditions of simulated star-forming regions, such as the spatial distribution, net bulk motion (virial ratio), and density, we investigate which parameters most affect the rate at which discs are dispersed due to external photoevaporation. We find that disc dispersal due to external photoevaporation is faster in highly substructured star-forming regions than in smooth and centrally concentrated regions. Sub-virial star-forming regions undergoing collapse also show higher rates of disc dispersal than regions that are in virial equilibrium or are expanding. In moderately dense (100 M pc) regions, half of all protoplanetary discs with radii 100 AU are photoevaporated within 1 Myr, three times faster than is currently suggested by observational studies. Discs in lower-density star-forming regions (10 M pc) survive for longer, but half are still dispersed on short timescales (2 Myr). This demonstrates that the initial conditions of the star forming regions will greatly impact the evolution and lifetime of protoplanetary discs. These results also imply that either gas giant planet formation is extremely rapid and occurs before the gas component of discs is evaporated, or gas giants only form in low-density star-forming regions where no massive stars are present to photoevaporate gas from protoplanetary discs.
14 pages, 5 figures
References in corpus (12)
- Before the first supernova: combined effects of HII regions and winds on molecular clouds
- The Photoevaporation of Discs Around Young Stars in Massive Clusters
- Line Emission from Gas in Optically Thick Dust Disks around Young Stars
- Formation and Evolution of Planetary Systems: Upper Limits to the Gas Mass in Disks Around Sun-like Stars
- Do O-stars form in isolation?
- UV Radiation Fields Produced by Young Embedded Star Clusters
- IN-SYNC II: Virial Stars from Sub-Virial Cores -- The Velocity Dispersion of Embedded Pre-Main-Sequence Stars in NGC 1333
- On the Similarity between Cluster and Galactic Stellar Initial Mass Functions
- Protoplanetary disc evolution affected by star-disc interactions in young stellar clusters
- Dynamics versus structure: breaking the density degeneracy in star formation
- Encounters in the ONC - observing imprints of star-disc interactions
- Supernova enrichment of planetary systems in low-mass star clusters
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- The evolution of dust in discs influenced by external photoevaporation
- Runaway and walkaway stars from the ONC with Gaia DR2
- Fly-by encounters between two planetary systems I: solar system analogues
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- Dynamical evolution of star-forming regions: III. Unbound stars and predictions for Gaia
- Warm millimetre dust in protoplanetary discs near massive stars
- Far and extreme ultraviolet radiation fields and consequent disc destruction in star-forming regions
- Testing viscous disc theory using the balance between stellar accretion and external photoevaporation of protoplanetary discs
- Illuminating the Tadpole's metamorphosis I: MUSE observations of a small globule in a sea of ionizing photons
- Carina's Pillars of Destruction: the view from ALMA
- Illuminating a tadpole's metamorphosis II: observing the on-going transformation with ALMA
- Double trouble: Gaia reveals (proto)-planetary systems that may experience more than one dense star-forming environment