Close binary systems among very low mass stars and brown dwarfs
arXiv:astro-ph/0510610 · doi:10.1002/asna.200510451
Abstract
Using Monte Carlo simulations and published radial velocity surveys we have constrained the frequency and separation (a) distribution of very low mass star (VLM) and brown dwarf (BD) binary systems. We find that simple Gaussian extensions of the observed wide binary distribution, with a peak at 4 au and 0.6< sigma_{log(a/au)}<1.0, correctly reproduce the observed number of close binary systems, implying a close (a<2.6 au) binary frequency of 17-30 per cent and overall frequency of 32-45 per cent. N-body models of the dynamical decay of unstable protostellar multiple systems are excluded with high confidence because they do not produce enough close binary VLMs/BDs. The large number of close binaries and high overall binary frequency are also completely inconsistent with published smoothed particle hydrodynamical modelling and argue against a dynamical origin for VLMs/BDs.
Proceedings of the workshop on Ultra-Low Mass Star Formation, eds. E. Martin, A. Magazzu. To appear in Astron. Nachr
References in corpus (7)
- On the properties of young multiple stars
- The First Discovery of a Wide Binary Brown Dwarf
- Discovery of Two Very Low-Mass Binaries: Final Results of an Adaptive Optics Survey of Nearby M6.0-M7.5 Stars
- On the frequency of close binary systems among very low-mass stars and brown dwarfs
- The Decay of Accreting Triple Systems as Brown Dwarf Formation Scenario
- Binary star formation from ring fragmentation
- Discovery of a widely separated binary system of very low mass stars
Cited by in corpus (8)
- CARMENES input catalogue of M dwarfs II. High-resolution imaging with FastCam
- Star Formation via the Little Guy: A Bayesian Study of Ultracool Dwarf Imaging Surveys for Companions
- A discontinuity in the low-mass initial mass function
- The LuckyCam Survey for Very Low Mass Binaries II: 13 new M4.5-M6.0 Binaries
- A discontinuity in the low-mass IMF - the case of high multiplicity
- Cosmic Supernova Rates and the Hubble Sequence
- Coronal Structure and Abundances in Young Fast Rotators
- Chemical evolution models: GRB host identification and cosmic dust predictions