Testing Theoretical Evolutionary Models with AB Dor C and the Initial Mass Function
arXiv:astro-ph/0510666 · doi:10.1086/499096
Abstract
We assess the constraints on the evolutionary models of young low-mass objects that are provided by the measurements of the companion AB Dor C by Close and coworkers and by a new comparison of model-derived IMFs of star-forming regions to the well-calibrated IMF of the solar neighborhood. After performing an independent analysis of Close's imaging and spectroscopic data for AB Dor C, we find that AB Dor C is not detected at a significant level (SN 1.2) in the SDI images when one narrow-band image is subtracted from another, but that it does appear in the individual SDI frames as well as the images at JHK. Using the age of 75-150 Myr for AB Dor from Luhman, Stauffer, & Mamajek, the luminosity predicted by the models of Chabrier & Baraffe is consistent with the value that we estimate. We measure a spectral type of M6+/-1 from the K-band spectrum of AB Dor C, which is earlier than the value of M8+/-1 from Close and is consistent with the model predictions when a dwarf temperature scale is adopted. In a test of these models at much younger ages, we show that the low-mass IMFs that they produce for star-forming regions are similar to the IMF of the solar neighborhood. If the masses of the low-mass stars and brown dwarfs in these IMFs of star-forming regions were underestimated by a factor of two as suggested by Close, then the IMF characterizing the current generation of Galactic star formation would have to be radically different from the IMF of the solar neighborhood.
15 pages, accepted to the Astrophysical Journal
References in corpus (7)
- An Infrared Spectroscopic Sequence of M, L and T Dwarfs
- New Brown Dwarfs and an Updated Initial Mass Function in Taurus
- A search for hot massive extrasolar planets around nearby young stars with the adaptive optics system NACO
- The Age of AB Dor
- TRIDENT: an Infrared Differential Imaging Camera Optimized for the Detection of Methanated Substellar Companions
- The Substellar Mass Function: A Bayesian Approach
- Discovery of an M4 Spectroscopic Binary in Upper Scorpius: A Calibration Point for Young Low-Mass Evolutionary Models
Cited by in corpus (20)
- The Stellar Population of the Chamaeleon I Star-Forming Region
- The Formation and Early Evolution of Low-mass Stars and Brown Dwarfs
- The nearest young moving groups
- HD 203030B: an Unusually Cool Young Sub-Stellar Companion near the L/T Transition
- The Wide Brown Dwarf Binary Oph 1622-2405 and Discovery of A Wide, Low Mass Binary in Ophiuchus (Oph 1623-2402): A New Class of Young Evaporating Wide Binaries?
- VLT/NACO Deep imaging survey of young, nearby austral stars
- Discovery of a Young Substellar Companion in Chamaeleon
- Epsilon Indi Ba, Bb: a detailed study of the nearest known brown dwarfs
- A Survey for New Members of the Taurus Star-Forming Region with the Sloan Digital Sky Survey
- Planets Around Low-Mass Stars (PALMS). I. A Substellar Companion to the Young M Dwarf 1RXS J235133.3+312720
- New Photometry and Spectra of AB Doradus C: An Accurate Mass Determination of a Young Low-Mass Object with Theoretical Evolutionary Tracks
- Oph 1622-2405: Not a Planetary-Mass Binary
- Improved age constraints for the AB Dor quadruple system - The binary nature of AB Dor B
- Coronagraphic near-IR photometry of AB Dor C
- Substellar Objects in Nearby Young Clusters VII: The substellar mass function revisited
- On the origin of the ultramassive white dwarf GD50
- Dynamical masses of M-dwarf binaries in young moving groups: I - The case of TWA 22 and GJ 2060
- The milliarcsecond-scale radio structure of AB Dor A
- Evidence of a substellar companion to AB Dor C
- Study of Eclipsing Binary and Multiple Systems in OB Associations: I. Ori OB1a - IM Mon