Evidence of a substellar companion around a very young T Tauri star
arXiv:1701.02713 · doi:10.1051/0004-6361/201629749
Abstract
We present results from a Near Infrared multi-epoch spectroscopic campaign to detect a young low-mass companion to a T Tauri star. AS 205A is a late-type dwarf (~K5) of ~1 Msun that belongs to a triple system. Independent photometric surveys discovered that AS 205A has two distinct periods (P1=6.78 and P2=24.78 days) detected in the light curve that persist over several years. Period P1 seems to be linked to the axial-rotation of the star and is caused by the presence of cool surface spots. Period P2 is correlated with the modulation in AS 205A brightness (V) and red color (V-R), consistent with a gravitating object within the accretion disk. We here derive precise Near Infrared radial velocities to investigate the origin of period P2 which is predicted to correspond to a cool source in a Keplerian orbit with a semi-major axis of ~0.17 AU positioned close to the inner disk radius of 0.14 AU. The radial velocity variations of AS 205A were found to have a period of P ~ 24.84 days and a semi-amplitude of 1.529 kms-1. This result closely resembles the P2 period in past photometric observations (P ~ 24.78 days). The analysis of the cross-correlation function bisector has shown no correlation with the radial velocity modulations, strongly suggesting that the period is not controlled by stellar rotation. Additional activity indicators should however be explored in future surveys. Taking this into account we found that the presence of a substellar companion is the explanation that best fits the results. We derived an orbital solution for AS 205A and found evidence of a m2sini 19.25 MJup object in an orbit with moderate eccentricity of e~0.34. If confirmed with future observations, preferably using a multiwavelength survey approach, this companion could provide interesting constraints on brown dwarf and planetary formation models.
A&A (accepted), 6 pages, 3 figures
References in corpus (13)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Protoplanetary Disk Structures in Ophiuchus
- The Magnetic Fields of Classical T Tauri Stars
- TW Hydrae: evidence of stellar spots instead of a Hot Jupiter
- Search for exoplanets with the radial-velocity technique: quantitative diagnostics of stellar activity
- Zodiacal Exoplanets in Time (ZEIT) III: A short-period planet orbiting a pre-main-sequence star in the Upper Scorpius OB Association
- A hot Jupiter orbiting a 2-Myr-old solar-mass T Tauri star
- A Candidate Young Massive Planet in Orbit around the Classical T Tauri Star CI Tau
- The NIRSPEC Brown Dwarf Spectroscopic Survey II: High-Resolution J-Band Spectra of M, L and T Dwarfs
- A multiwavelength radial velocity search for planets around the brown dwarf LP 944-20
- ALMA Observations of the T Tauri Binary System AS 205: Evidence for Molecular Winds and/or Binary Interactions
- Rotation Effects in Classical T Tauri Stars
- A pragmatic Bayesian perspective on correlation analysis: The exoplanetary gravity - stellar activity case
Cited by in corpus (6)
- A high binary fraction for the most massive close-in giant planets and brown dwarf desert members
- Spectro-astrometry of the pre-transitional star LkCa 15 does not reveal an accreting planet but extended H emission
- The Mean Magnetic Field Strength of CI Tau
- The SPHERE view of three interacting twin disc systems in polarised light
- A MUSE Spectro-imaging Study of the Th 28 Jet: Precession in the Inner Jet
- Complex Magnetospheric Accretion Flows in Low Accretor CVSO 1335