Resolved Near-Infrared Spectroscopy of the Mysterious Pre-Main Sequence Binary Systems T Tau S
arXiv:astro-ph/0112103 · doi:10.1086/338987
Abstract
We obtained new near-infrared images of the prototypical pre-main sequence triple system T Tau, as well as the first resolved medium-resolution spectra of the close pair T Tau S. At the time of our observations, the tight binary had a 13 AU projected separation and showed significant motion since its discovery, three years before. The orbit cannot be strongly constrained yet, but the observed motion of T Tau Sb with respect to T Tau Sa suggests that the system is at least as massive as T Tau N itself. This may indicate that T Tau N is not the most massive star in the system. The spectrum of T Tau Sa, which is totally featureless except for a strong Br gamma emission line, identifies this component with the ``infrared companion'', whose exact nature remains obscure but may be the consequence of it being the most massive component of the system. Contrasting sharply with T Tau Sa, the spectrum of T Tau Sb shows numerous photospheric features consistent with an early-M spectral type. The presence of a strong Br gamma emission line and of a significant veiling continuum classifies this object as a deeply embedded T Tauri star. From these observations, we conclude that both components of T Tau S are embedded in their own dense circumstellar cocoon of material, which are probably fed by a much more extended structure.
Accepted for publication by ApJ; 21 pages, including 3 figures
References in corpus (2)
Cited by in corpus (41)
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- VLBA determination of the distance to nearby star-forming regions I. The distance to T Tauri with 0.4% accuracy
- VLBA determination of the distance to nearby star-forming regions II. Hubble 4 and HDE 283572 in Taurus
- VLBA determination of the distance to nearby star-forming regions III. HP Tau/G2 and the three-dimensional structure of Taurus
- The Gould's Belt Distances Survey (GOBELINS). IV. Distance, Depth and Kinematics of the Taurus Star-Forming Region
- Gaia EDR3 Reveals the Substructure and Complicated Star Formation History of the Greater Taurus-Auriga Star Forming Complex
- On the origin of [NeII] 12.81 micron emission from pre-main sequence stars: Disks, jets, and accretion
- X-rays from T Tau: A test case for accreting T Tauri stars
- Multi-epoch VLBA observations of T Tauri South
- Keck Adaptive Optics Imaging of Nearby Young Stars: Detection of Close Multiple Systems
- Spatially resolved mid-infrared observations of the triple system T Tauri
- Mapping the Circumstellar Environment of T Tauri with Fluorescent H_2 Emission
- Orbital Motion in Pre-Main Sequence Binaries
- Orbits and Masses in the T Tauri System
- Dynamical Mass Estimates for Incomplete Orbits: Young Multiple Stars in Taurus and Ophiuchus
- The circumstellar environment of T Tau S at high spatial and spectral resolution
- No Fossil Disk in the T Tauri Multiple System V773 Tau
- The Spatial Distribution of Fluorescent H Near T Tau
- A High Spatial Resolution Infrared View of the T Tauri Multiple System
- VLTI/MIDI atlas of disks around low- and intermediate-mass young stellar objects
- Variable accretion as a mechanism for brightness variations in T Tau S
- Ejection of a Low Mass Star in a Young Stellar System in Taurus
- The 2D Distribution of Iron Rich Ejecta in the Remnant of SN 1885 in M31
- Accurate stellar masses in the multiple system T Tau
- Internal and relative motions of the Taurus and Ophiuchus star-forming regions
- Evidence for Misaligned Disks in the T Tauri Triple System: 10 um Super-Resolution with MMTAO and Markov Chains
- Dust Stratification in Young Circumstellar Disks
- Wobbling and precessing jets from warped disks in binary systems
- Circumstellar disks and planets. Science cases for next-generation optical/infrared long-baseline interferometers
- Orbits in the T Tauri triple system observed with SPHERE
- Near-Infrared, Adaptive Optics Observations of the T Tauri Multiple-Star System
- Long-term simulation of MHD jet launching from an orbiting star-disk system
- A young stellar cluster within the RCW41 HII region: deep NIR photometry and Optical/NIR polarimetry
- Orbital Motion, Variability, and Masses in the T Tauri Triple System
- Curved jet motion. I. Orbiting and precessing jets
- Examining the T Tauri system with SPHERE
- Optical and UV Spectra of the Remnant of SN 1885 (S And) in M31
- On the Nature of the T Tauri Triple System
- Mid-infrared photometry of the T Tauri triple system with kernel phase interferometry
- Non coeval young multiple systems? On the pairing of protostars and T Tauri stars
- VLBI observations of T Tauri S