Strong effect of the cluster environment on the size of protoplanetary discs?
arXiv:1504.06092 · doi:10.1051/0004-6361/201425552
Abstract
Context. Most stars are born in clusters, thus the protoplanetary discs surrounding the newly formed stars might be influenced by this environment. Isolated star-disc encounters have previously been studied, and it was shown that very close encounters are necessary to completely destroy discs. However, relatively distant encounters are still able to change the disc size considerably. Aims. We quantify the importance of disc-size reduction that is due to stellar encounters in an entire stellar population. Methods. We modelled young, massive clusters of different densities using the code Nbody6 to determine the statistics of stellar encounter parameters. In a second step, we used these parameters to investigate the effect of the environments on the disc size. For this purpose, we performed a numerical experiment with an artificial initial disc size of 105 AU. Results. We quantify to which degree the disc size is more sensitive to the cluster environment than to the disc mass or frequency. We show that in all investigated clusters a large portion of discs is significantly reduced in size. After 5 Myr, the fraction of discs smaller than 1000 AU in ONC-like clusters with an average number density of 60pc, the fraction of discs smaller than 1000 AU is 65%, while discs smaller than 100 AU make up 15%. These fractions increase to 84% and 39% for discs in denser clusters like IC 348 (500pc). Even in clusters with a density four times lower than in the ONC (15pc), about 43% of all discs are reduced to sizes below 1 000 AU and roughly 9% to sizes below 100 AU. Conclusions. For any disc in the ONC that initially was larger than 1 000 AU, the probability to be truncated to smaller disc sizes as a result of stellar encounters is quite high. Thus, among other effects, encounters are important in shaping discs and potentially forming planetary systems in stellar clusters.
accepted for publication in A&A
References in corpus (16)
- Protoplanetary Disk Structures in Ophiuchus
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- X-ray irradiated protoplanetary disk atmospheres I: Predicted emission line spectrum and photoevaporation
- The Initial Mass Function of the Massive Star-forming Region NGC 3603 from Near-Infrared Adaptive Optics observations
- Binary Stars in the Orion Nebula Cluster
- Short dissipation times of proto-planetary discs - an artifact of selection effects?
- Proplyds and Massive Disks in the Orion Nebula Cluster Imaged with CARMA and SMA
- Protoplanetary disc evolution affected by star-disc interactions in young stellar clusters
- Sizes of protoplanetary discs after star-disc encounters
- Star Formation in Space and Time: The Orion Nebula Cluster
- Can habitable planets form in clustered environments?
- The Fate of Discs around Massive Stars in Young Clusters
- Capture Formed Binaries via Encounters with Massive Protostars
- Encounters in the ONC - observing imprints of star-disc interactions
- Gravitational Instabilities induced by Cluster Environment? - The encounter-induced angular momentum transfer in discs
- Does the mass distribution in discs influence encounter-induced losses in young star clusters?
Cited by in corpus (18)
- Different dust and gas radial extents in protoplanetary disks: consistent models of grain growth and CO emission
- Planet population synthesis driven by pebble accretion in cluster environments
- Cluster dynamics largely shapes protoplanetary disc sizes
- Ongoing flyby in the young multiple system UX Tauri
- Grand challenges in protoplanetary disc modelling
- On the Origin of the Bimodal Rotational Velocity Distribution in Stellar Clusters: Rotation on the Pre-Main Sequence
- Photochemical-dynamical models of externally FUV irradiated protoplanetary discs
- Oort cloud Ecology II: The chronology of the formation of the Oort cloud
- Effects of inclined star-disk encounter on protoplanetary disk size
- Face-on accretion onto a protoplanetary disc
- Cradle(s) of the Sun
- Far and extreme ultraviolet radiation fields and consequent disc destruction in star-forming regions
- Hierarchical formation of Westerlund 1: a collapsing cluster with no primordial mass segregation?
- Disc truncation in embedded star clusters: Dynamical encounters versus face-on accretion
- Planet population synthesis: The role of stellar encounters
- Short-lived radioisotope enrichment in star-forming regions from stellar winds and supernovae
- Unbound stars hold the key to young star cluster history
- Generation of inclined protoplanetary discs and misaligned planets through mass accretion I: Coplanar secondary discs