Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): A close low mass companion to ET Cha
arXiv:2007.05274 · doi:10.1051/0004-6361/202038383
Abstract
To understand the formation of planetary systems, one needs to understand the initial conditions of planet formation, i.e. the young gas-rich planet forming disks. Spatially resolved high-contrast observations are of particular interest, since substructures in disks, linked to planet formation, can be detected and close companions or even planets in formation embedded in the disk can be revealed. In this study we present the first result of the DESTINYS survey (Disk Evolution Study Through Imaging of Nearby Young Stars). DESTINYS is an ESO/SPHERE large program that aims at studying disk evolution in scattered light, mainly focusing on a sample of low-mass stars (<1) in nearby (~200 pc) star-forming regions. In this particular study we present the observations of the ET Cha (RECX 15) system, a nearby 'old' classical T Tauri star (5-8 Myr, ~100 pc), which is still strongly accreting. We use SPHERE/IRDIS in H-band polarimetric imaging mode to obtain high contrast images of the ET Cha system to search for scattered light from the circumstellar disk as well as thermal emission from close companions. We additionally employ VLT/NACO total intensity archival data taken in 2003. We report here the discovery of a low-mass (sub)stellar companion with SPHERE/IRDIS to ET Cha. We are estimating the mass of this new companion based on photometry. Depending on the system age it is a 5 Myr, 50 brown dwarf or an 8 Myr, 0.10 M-type pre-main-sequence star. We explore possible orbital solutions and discuss the recent dynamic history of the system. Independent of the precise companion mass we find that the presence of the companion likely explains the small size of the disk around ET Cha. The small separation of the binary pair indicates that the disk around the primary component is likely clearing from the outside in, explaining the high accretion rate of the system.
14 pages, 9 figures, accepted for publication in A&A on 09-07-2020
References in corpus (23)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Astrophysics Source Code Library
- A Steeper than Linear Disk Mass-Stellar Mass Scaling Relation
- Spitzer observations of the Orion OB1 association: disk census in the low mass stars
- Challenges in Planet Formation
- orbitize!: A Comprehensive Orbit-fitting Software Package for the High-contrast Imaging Community
- Direct detection of scattered light gaps in the transitional disk around HD 97048 with VLT/SPHERE
- High-resolution imaging of planet host candidates. A comprehensive comparison of different techniques
- The polarimetric imaging mode of VLT/SPHERE/IRDIS II: Characterization and correction of instrumental polarization effects
- The polarimetric imaging mode of VLT/SPHERE/IRDIS I: Description, data reduction and observing strategy
- The Mass Budget of Planet Forming Discs: Isolating the Epoch of Planetesimal Formation
- SPHERE IRDIS and IFS astrometric strategy and calibration
- Astrometric follow-up observations of directly imaged sub-stellar companions to young stars and brown dwarfs
- The evolution of photo-evaporating viscous discs in binaries
- Massive discs around low-mass stars
- A multiplicity study of transiting exoplanet host stars. I. High-contrast imaging with VLT/SPHERE
- The evolution of accretion in young stellar objects: Strong accretors at 3 - 10 Myr
- Simulations of star formation in Ophiuchus, II: Multiplicity
- X-Shooter observations of low-mass stars in the Eta Chamaeleontis association
- eta Chameleontis: abnormal initial mass function or dynamical evolution?
- 2MASS J15460752-6258042: a mid-M dwarf hosting a prolonged accretion disc
- Calibration of the pre-main sequence RS Cha binary system
- Accretion Kinematics in the T Tauri Binary TWA 3A: Evidence for Preferential Accretion onto the TWA 3A Primary
Cited by in corpus (10)
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): Late infall causing disk misalignment and dynamic structures in SU Aur
- On dust evolution in planet-forming discs in binary systems. I -- Theoretical and numerical modelling: radial drift is faster in binary discs
- Protoplanetary disks in -band total intensity and polarized light
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): A Panchromatic View of DO Tau's Complex Kilo-au Environment
- Interpreting molecular hydrogen and atomic oxygen line emission of T Tauri disks with photoevaporative disk-wind models
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): HD 34700 A unveils an inner ring
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): Diverse outcomes of binary-disk interactions
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): Characterization of the young star T CrA and its circumstellar environment
- Planet-forming disks and their environment across regions and time from the full NIR census
- A SPHERE survey of self-shadowed planet-forming disks