Short dissipation times of proto-planetary discs - an artifact of selection effects?
arXiv:1409.0978 · doi:10.1088/2041-8205/793/2/L34
Abstract
The frequency of discs around young stars, a key parameter for understanding planet formation, is most readily determined in young stellar clusters where many relatively coeval stars are located in close proximity. Observational studies seem to show that the disc frequency decreases rapidly with cluster age with <10% of cluster stars retaining their discs for longer than 2-6 Myr. Given that at least half of all stars in the field seem to harbor one or more planets, this would imply extremely fast disc dispersal and rapid planet growth. Here we question the validity of this constraint by demonstrating that the short disc dissipation times inferred to date might have been heavily underestimated by selection effects. Critically, for ages >3Myr only stars that originally populated the densest areas of very populous clusters, which are prone to disc erosion, are actually considered. This tiny sample may not be representative of the majority of stars. In fact, the higher disc fractions in co-moving groups indicate that it is likely that over 30% of all field stars retain their discs well beyond 10 Myr, leaving ample time for planet growth. Equally our solar system, with a likely formation time > 10 Myr, need no longer be an exception but in fact typical of planetary systems.
16 pages, 5 figures, accepted by ApJL
References in corpus (27)
- Protoplanetary Disks and Their Evolution
- The false positive rate of Kepler and the occurrence of planets
- On the Star Formation Rates in Molecular Clouds
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- One or more bound planets per Milky Way star from microlensing observations
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- An Old Disk That Can Still Form a Planetary System
- Massive stars in massive clusters II: Disruption of bound clusters by photoionization
- Evidence for the Strong Effect of Gas Removal on the Internal Dynamics of Young Stellar Clusters
- A Spitzer view of protoplanetary disks in the gamma Velorum cluster
- Pre-main-sequence isochrones -- II. Revising star and planet formation timescales
- The Disk Population of the Upper Scorpius Association
- Correlation between the spatial distribution of the circumstellar disks and the massive stars in the open cluster NGC 6611. Compiled catalog and cluster parameters
- Viscous Evolution and Photoevaporation of Circumstellar Disks due to External FUV Radiation Fields
- A Resolved Molecular Gas Disk around the Nearby A Star 49 Ceti
- The evolution of embedded star clusters
- Molecular gas in young debris disks
- WISE Circumstellar Disks in the Young Sco-Cen Association
- The expansion of massive young star clusters - observation meets theory
- The Occurrence of Wide-Orbit Planets in Binary Star Systems
- From discs to planetesimals I: evolution of gas and dust discs
- Young stars in Epsilon Cha and their disks: disk evolution in sparse associations
- The Fate of Discs around Massive Stars in Young Clusters
- Encounters in the ONC - observing imprints of star-disc interactions
- Circumstellar disks and planets. Science cases for next-generation optical/infrared long-baseline interferometers
- Reaction of Massive Clusters to Gas Expulsion - The cluster density dependence
- A Dusty M5 Binary in the beta Pictoris Moving Group
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- Water loss from Earth-sized planets in the habitable zones of ultracool dwarfs: Implications for the planets of TRAPPIST-1
- The habitability of Proxima Centauri b. I. Irradiation, rotation and volatile inventory from formation to the present
- Challenges in Planet Formation
- Magnetospheric Truncation, Tidal Inspiral, and the Creation of Short and Ultra-Short Period Planets
- The In Situ Formation of Giant Planets at Short Orbital Periods
- Zoom-Simulations of Protoplanetary Disks starting from GMC scales
- Characterization of exoplanets from their formation III: The statistics of planetary luminosities
- Fingerprints of giant planets in the photospheres of Herbig stars
- The Natural History of 'Oumuamua
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- WASP-107b's density is even lower: a case study for the physics of planetary gas envelope accretion and orbital migration
- The formation of the solar system
- Observations of Solids in Protoplanetary Disks
- Strong effect of the cluster environment on the size of protoplanetary discs?
- The formation of mini-Neptunes
- On the growth of pebble-accreting planetesimals
- Cluster dynamics largely shapes protoplanetary disc sizes
- A precise asteroseismic age and metallicity for HD 139614: a pre-main-sequence star with a protoplanetary disc in Upper-Centaurus Lupus
- Fingerprints of giant planets in the composition of solar twins
- Formation of solar system analogs I: looking for initial conditions through a population synthesis analysis
- The hybrid disks: a search and study to better understand evolution of disks
- Application of gas dynamical friction for planetesimals: I. Evolution of single planetesimals
- Giant planet formation models with a self-consistent treatment of the heavy elements
- The End of Runaway: How Gap Opening Limits the Final Masses of Gas Giants
- The Formation of Solar System Analogs in Young Star Clusters
- How do disks and planetary systems in high-mass open clusters differ from those around field stars?
- Setting the Stage: Planet formation and Volatile Delivery
- Terrestrial planet formation: Dynamical shake-up and the low mass of Mars
- The APOGEE-2 Survey of the Orion Star Forming Complex: I. Target Selection and Validation with early observations
- A hypothesis for the rapid formation of planets
- N-body simulations of planet formation via pebble accretion II. How various giant planets form
- Giant planet effects on terrestrial planet formation and system architecture
- Breaking the centrifugal barrier to giant planet contraction by magnetic disc braking
- Giant planet formation at the pressure maxima of protoplanetary disks
- Did Jupiter's core form in the innermost parts of the Sun's protoplanetary disk?
- Planetary formation and water delivery in the habitable zone around solar-type stars in different dynamical environments
- A multi-instrument and multi-wavelength high angular resolution study of MWC614: quantum heated particles inside the disk cavity
- Effects of an eccentric inner Jupiter on the dynamical evolution of icy body reservoirs in a planetary scattering scenario
- Long live the disk: lifetimes of protoplanetary disks in hierarchical triple star systems and a possible explanation for HD 98800 B
- Earth and Terrestrial Planet Formation
- Inhibited Coagulation of Micron-size Dust Due to the Electrostatic Barrier
- IR nebulae around bright massive stars as indicators for binary interactions
- Application of Gas Dynamical Friction for Planetesimals: II. Evolution of Binary Planetesimals
- Stochasticity & Predictability in Terrestrial Planet Formation
- Linking planetesimal and dust content in protoplanetary disks via a local toy model
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- The formation of wide exoKuiper belts from migrating dust traps
- Dust cleansing of star-forming gas: II. Did late accretion flows change the chemical composition of the solar atmosphere?
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- Formation of Solar system analogues II: post-gas phase growth and water accretion in extended discs via N-body simulations
- Gaia EDR3 comparative study of protoplanetary disk fractions in young stellar clusters
- Chandra Detection of An Evolved Population of Young Stars in Serpens South
- Circumplanetary disk ices. I. Ice formation vs. viscous evolution and grain drift
- Accretion and outflow activity on the late phases of pre-main-sequence evolution. The case of RZ Piscium
- What's Behind the Elephant's Trunk? Identifying Young Stellar Objects on the Outskirts of IC1396
- Which young clusters/associations are we missing today?
- Using binary statistics in Taurus-Auriga to distinguish between brown dwarf formation processes
- Investigating the rotational evolution of very low-mass stars and brown dwarfs in young clusters using Monte Carlo simulations
- An alternative model for the origin of gaps in circumstellar disks
- Distinct Rotational Evolution of Giant Planets and Brown Dwarf Companions
- Precise determination of circumstellar disk lifetimes: Disk evolution in a single star-forming region
- Possible in situ formation of Uranus and Neptune via Pebble Accretion
- Longterm Stability of Planetary Systems formed from a Transitional Disk