Characterizing the Brown Dwarf Formation Channels from the Initial Mass Function and Binary-star Dynamics
arXiv:1501.01640 · doi:10.1088/0004-637X/800/1/72
Abstract
The stellar initial mass function (IMF) is a key property of stellar populations. There is growing evidence that the classical star-formation mechanism by the direct cloud fragmentation process has difficulties reproducing the observed abundance and binary properties of brown dwarfs and very-low-mass stars. In particular, recent analytical derivations of the stellar IMF exhibit a deficit of brown dwarfs compared to observational data. Here we derive the residual mass function of brown dwarfs as an empirical measure of the brown dwarf deficiency in recent star-formation models with respect to observations and show that it is compatible with the substellar part of the Thies-Kroupa IMF and the mass function obtained by numerical simulations. We conclude that the existing models may be further improved by including a substellar correction term that accounts for additional formation channels like disk or filament fragmentation. The term "peripheral fragmentation" is introduced here for such additional formation channels. In addition, we present an updated analytical model of stellar and substellar binarity. The resulting binary fraction and the dynamically evolved companion mass-ratio distribution are in good agreement with observational data on stellar and very-low-mass binaries in the Galactic field, in clusters, and in dynamically unprocessed groups of stars if all stars form as binaries with stellar companions. Cautionary notes are given on the proper analysis of mass functions and the companion mass-ratio distribution and the interpretation of the results. The existence of accretion disks around young brown dwarfs does not imply that these form just like stars in direct fragmentation.
10 pages, 9 figures, published in ApJ
References in corpus (13)
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- The properties of brown dwarfs and low-mass hydrogen-burning stars formed by disc fragmentation
- The Importance of Radiative Feedback for the Stellar Initial Mass Function
- Brown dwarf formation by gravitational fragmentation of massive, extended protostellar discs
- Gravitational fragmentation and the formation of brown dwarfs in stellar clusters
- Radiative transfer and the energy equation in SPH simulations of star formation
- Converting H Luminosities into Star Formation Rates
- Tidally induced brown dwarf and planet formation in circumstellar discs
- Interferometric Identification of a Pre-Brown Dwarf
- Multiplicity and Optical Excess Across the Substellar Boundary in Taurus
- Binary frequency of very young brown dwarfs at separations smaller than 3 AU
- 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