Testing the universality of star formation - I. Multiplicity in nearby star-forming regions
arXiv:1201.1311 · doi:10.1111/j.1365-2966.2012.20437.x
Abstract
We have collated multiplicity data for five clusters (Taurus, Chamaeleon I, Ophiuchus, IC348, and the Orion Nebula Cluster). We have applied the same mass ratio (flux ratios of delta K <= 2.5) and primary mass cuts (~0.1-3.0 Msun) to each cluster and therefore have directly comparable binary statistics for all five clusters in the separation range 62-620 au, and for Taurus, Chamaeleon I, and Ophiuchus in the range 18-830 au. We find that the trend of decreasing binary fraction with cluster density is solely due to the high binary fraction of Taurus, the other clusters show no obvious trend over a factor of nearly 20 in density. With N-body simulations we attempt to find a set of initial conditions that are able to reproduce the density, morphology and binary fractions of all five clusters. Only an initially clumpy (fractal) distribution with an initial total binary fraction of 73 per cent (17 per cent in the range 62-620 au) is able to reproduce all of the observations (albeit not very satisfactorily). Therefore, if star formation is universal the initial conditions must be clumpy and with a high (but not 100 per cent) binary fraction. This could suggest that most stars, including M-dwarfs, form in binaries.
Accepted for publication in MNRAS, 19 pages, 22 figures
References in corpus (16)
- The distance to the Orion Nebula
- The High Angular Resolution Multiplicity of Massive Stars
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Stellar Multiplicity and the IMF: Most Stars Are Single
- The Stellar Population of the Chamaeleon I Star-Forming Region
- Dynamical mass segregation on a very short timescale
- Binary Stars in the Orion Nebula Cluster
- The primordial binary population II: Recovering the binary population for intermediate mass stars in Sco OB2
- Visual Binaries in the Orion Nebula Cluster
- Fitting the young main-sequence; distances, ages and age spreads
- Dense Stellar Populations: Initial Conditions
- A Multiplicity Census of Young Stars in Chamaeleon I
- The distance to the Orion Nebula Cluster
- Identifying star clusters in a field: A comparison of different algorithms
- eta Chameleontis: abnormal initial mass function or dynamical evolution?
- Quasi-binarity of massive stars in young dense clusters - the case of the ONC
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- Inverse dynamical population synthesis: Constraining the initial conditions of young stellar clusters by studying their binary populations
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- The M-dwarfs in Multiples (MinMs) survey - I. Stellar multiplicity among low-mass stars within 15 pc
- Constraining the multiplicity statistics of the coolest brown dwarfs: binary fraction continues to decrease with spectral type
- The Formation and Evolution of Wide-Orbit Stellar Multiples In Magnetized Clouds
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- The Spatial Structure of Young Stellar Clusters. II. Total Young Stellar Populations
- Isotopic enrichment of forming planetary systems from supernova pollution
- Binaries in the field: fossils of the star formation process?
- Supernova enrichment and dynamical histories of solar-type stars in clusters
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars V. A Characterization of Protostellar Multiplicity
- Testing the universality of star formation - II. Comparing separation distributions of nearby star-forming regions and the field
- Search for associations containing young stars (SACY). VI. Is multiplicity universal? Stellar multiplicity in the range 3-1000 au from adaptive-optics observations
- Consequences of Dynamical Disruption and Mass Segregation for the Binary Frequencies of Star Clusters
- The binary companion mass ratio distribution: an imprint of the star formation process?
- The same, but different: Stochasticity in binary destruction
- An HST Survey for 100-1000 AU Companions around Young Stellar Objects in the Orion Molecular Clouds: Evidence for Environmentally Dependent Multiplicity
- Simulations of star formation in Ophiuchus, II: Multiplicity
- Dynamical evolution of fractal structures in star-forming regions
- Detailed chemical compositions of the wide binary HD 80606/80607: revised stellar properties and constraints on planet formation
- Binary mass ratios: system mass not primary mass
- HD 80606: Searching the chemical signature of planet formation
- The Taurus Boundary of Stellar/Substellar (TBOSS) Survey I: far-IR disk emission measured with Herschel
- Stars on the run: escaping from stellar clusters
- On the effects of solenoidal and compressive turbulence in prestellar cores
- Constraints on star formation in NGC2264
- A wide planetary-mass companion to a young low-mass brown dwarf in Ophiuchus
- Modelling the structure of star clusters with fractional Brownian motion
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- Long-term stability of planets in and around binary stars
- On the frequency of planetary systems around G-dwarfs
- [Fe II] emissions associated with the young interacting binary UY Aurige
- Disentangling the origin of chemical differences using GHOST
- New binaries in the epsilon Cha association
- Primordial mass segregation of star clusters with primordial binaries
- On the Binary Frequency of the Lowest Mass Members of the Pleiades with Hubble Space Telescope Wide Field Camera 3
- A low-mass companion desert among intermediate-mass visual binaries: The scaled-up counterpart to the brown dwarf desert
- 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
- Enlarging habitable zones around binary stars in hostile environments
- Reticuli binary system: A puzzling chromospheric activity pattern
- The Role of Discs in the Collapse and Fragmentation of Prestellar Cores
- Discs in misaligned binary systems
- The Formation of Double Hot Jupiter Systems through von Zeipel-Lidov-Kozai Migration
- The effects of supernovae on the dynamical evolution of binary stars and star clusters
- Clustered Star Formation: A Review
- Drifters on the edge of town: Boötis stars in clusters
- The Great Planetary Heist: Theft and capture in star-forming regions