Far and extreme ultraviolet radiation fields and consequent disc destruction in star-forming regions
arXiv:2101.04130 · doi:10.1093/mnras/stab054
Abstract
The first stages of planet formation usually occur when the host star is still in a (relatively) dense star-forming region, where the effects of the external environment may be important for understanding the outcome of the planet formation process. In particular, star-forming regions that contain massive stars have strong far ultraviolet (FUV) and extreme ultraviolet (EUV) radiation fields, which can induce mass-loss from protoplanetary discs due to photoevaporation. In this paper we present a parameter-space study of the expected FUV and EUV fields in N-body simulations of star-forming regions with a range of initial conditions. We then use recently published models to determine the mass-loss due to photoevaporation from protoplanetary discs. In particular, we focus on the effects of changing the initial degree of spatial structure and initial virial ratio in the star-forming regions, as well as the initial stellar density. We find that the FUV fields in star-forming regions are much higher than in the interstellar medium, even when the regions have stellar densities as low as in the Galactic field, due to the presence of intermediate-mass, and massive, stars (>5Msun). These strong radiation fields lead to the destruction of the gas component in protoplanetary discs within 1 Myr, implying that gas giant planets must either form extremely rapidly (<1 Myr), or that they exclusively form in star-forming regions like Taurus, which contain no intermediate-mass or massive stars. The latter scenario is in direct tension with meteoritic evidence from the Solar system that suggests the Sun and its protoplanetary disc was born in close proximity to massive stars.
18 pages (including two short appendices), 6 Fgiures in main paper, accepted for publication in MNRAS
References in corpus (27)
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Gas expulsion and the destruction of massive young clusters
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- The lifecycle of molecular clouds in nearby star-forming disc galaxies
- A water budget dichotomy of rocky protoplanets from Al-heating
- Do O-stars form in isolation?
- ALMA Observations of the Orion Proplyds
- Solar system genealogy revealed by extinct short-lived radionuclides in meteorites
- Interaction of Supernova Ejecta with Nearby Protoplanetary Disks
- UV Radiation Fields Produced by Young Embedded Star Clusters
- The evolution of dust in discs influenced by external photoevaporation
- Protoplanetary disc evolution affected by star-disc interactions in young stellar clusters
- Strong effect of the cluster environment on the size of protoplanetary discs?
- A case of simultaneous star and planet formation
- Runaway and walkaway stars from the ONC with Gaia DR2
- Cluster dynamics largely shapes protoplanetary disc sizes
- Dynamics versus structure: breaking the density degeneracy in star formation
- The first multi-dimensional view of mass loss from externally FUV irradiated protoplanetary discs
- Isotopic enrichment of forming planetary systems from supernova pollution
- Rapid destruction of protoplanetary discs due to externalphotoevaporation in star-forming regions
- Protoplanetary Disc Response to Distant Tidal Encounters in Stellar Clusters
- Proplyds in the Flame Nebula NGC 2024
- Unlocking Galactic Wolf-Rayet stars with DR2 II: Cluster and Association membership
- Distributions of Short-Lived Radioactive Nuclei Produced by Young Embedded Stellar Clusters
- Encounters in the ONC - observing imprints of star-disc interactions
- Supernova enrichment of planetary systems in low-mass star clusters
- External photoevaporation of protoplanetary discs in Cygnus OB2: linking discs to star formation dynamical history
Cited by in corpus (12)
- Planet formation via pebble accretion in externally photoevaporating discs
- Radiation shielding of protoplanetary discs in young star-forming regions
- The influence of the environment on the spin evolution of low-mass stars. I. External photoevaporation of circumstellar disks
- Constraints on star formation in NGC2264
- Chemical modeling of Orion Nebula Cluster disks: evidence for massive, compact gas disks with ISM-like gas-to-dust ratios
- Subaru Hyper Suprime-Cam Survey of Cygnus OB2 Complex -- I: Introduction, Photometry and Source Catalog
- Short-lived radioisotope enrichment in star-forming regions from stellar winds and supernovae
- The evolution of protoplanetary disc radii and disc masses in star-forming regions
- Theoretical Distributions of Short-Lived Radionuclides for Star Formation in Molecular Clouds
- Evaporation before disruption: comparing timescales for Jovian planets in star-forming regions
- Drifters on the edge of town: Boötis stars in clusters
- The Great Planetary Heist: Theft and capture in star-forming regions