Probing the low-mass end of the companion mass function for O-type stars
arXiv:2112.10831 · doi:10.1051/0004-6361/202142418
Abstract
Almost all massive stars are part of a binary system. Given the wide range of separations at which these companions are found, several observational techniques have been adopted to characterize them, but contrasts greater than 4 in the H-band have never been reached between 0".1 and 1". We used VLT/SPHERE to observe simultaneously with the IRDIS and IFS sub-systems 18 O-type stars within 6 kpc and ages between 1-5 Myrs to probe the existence of stellar companions in the angular separation range from 0".15 to 6" down to very low mass ratios. The IFS YJH- band observations have allowed us to probe the presence of sub-solar companions in a 1".7x1".7 field-of-view down to magnitude limits of deltaH=10 at 0".4. In the wider 12"x12" IRDIS field-of-view, we reached contrasts of deltaK=12 at 1", enabling us to look for even fainter companions. This paper presents five newly discovered intermediate (<1") separation companions, three of which are smaller than 0.2M_sun. If confirmed by future analyses of proper motions, these new detections represent the lowest-mass companions ever found around O-type stars. Assuming that all sources detected within 1" are physically bound, the observed fraction of companions for O-type stars between 0".15 and 0".9 is 0.39+/-0.15, whereas it increases to 1.6+/-0.3 in the separation range from 0".9 to 6". These findings clearly support the notion that massive stars form almost exclusively in multiple systems, and that larger AO-assisted coronagraphic surveys are crucial in placing constraints on the multiplicity properties of massive star companions in regions of the parameter space that have previously gone unexplored, and demonstrate that the companion mass function is populated down to the lowest stellar masses.
Accepted for publication in Astronomy & Astrophysics. 14 pages, 12 figures
References in corpus (13)
- Southern Massive Stars at High Angular Resolution: Observational Campaign and Companion Detection
- The High Angular Resolution Multiplicity of Massive Stars
- Fundamental limitations of high contrast imaging set by small sample statistics
- The VLT-FLAMES survey of massive stars: Evolution of surface N abundances and effective temperature scales in the Galaxy and Magellanic Clouds
- Substructures in the Keplerian disc around the O-type (proto)star G17.64+0.16
- Adaptive Optics Photometry and Astrometry of Binary Stars. III. A Faint Companion Search of O-Star Systems
- MONOS: Multiplicity Of Northern O-type Spectroscopic systems. I. Project description and spectral classifications and visual multiplicity of previously known objects
- The Alma catalog of OB stars. II. A cross-match with Gaia DR2 and an updated map of the solar neighbourhood
- The young massive SMC cluster NGC 330 seen by MUSE. I. Observations and stellar content
- The Villafranca catalog of Galactic OB groups. II. From Gaia DR2 to EDR3 and ten new systems with O stars
- Early-type objects in NGC6611 and Eagle Nebula
- A Survey for High-Mass Eclipsing Binaries
- The Carina High-contrast Imaging Project for massive Stars (CHIPS): II. O stars in Trumpler~14
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- The onset of stellar multiplicity in massive star formation: A search for low-mass companions of massive young stellar objects with -band adaptive optics imaging
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