Line-dependent veiling in very active T Tauri Stars
arXiv:1712.03784 · doi:10.1051/0004-6361/201731444
Abstract
The T Tauri stars with active accretion disks show veiled photospheric spectra. This is supposedly due to non-photospheric continuum radiated by hot spots beneath the accretion shocks at stellar surface and/or chromospheric emission lines radiated by the post-shocked gas. The amount of veiling is often considered as a measure of the mass-accretion rate. We analysed high-resolution photospheric spectra of accreting T Tauri stars LkHa 321, V1331 Cyg, and AS 353 A with the aim of clarifying the nature of the line-dependent veiling. Each of these objects shows a highly veiled, strong emission line spectrum and powerful wind features indicating high rates of accretion and mass loss. Equivalent widths of hundreds of weak photospheric lines were measured in the observed spectra and compared with those in synthetic spectra with the same spectral type. We found that the veiling is strongly line-dependent: larger in stronger photospheric lines and weak or absent in the weakest ones. No dependence of veiling on excitation potential within 0 to 5 eV was found. Different physical processes responsible for these unusual veiling effects are discussed in the framework of the magnetospheric accretion model. The observed veiling has two origins: 1) an abnormal structure of stellar atmosphere heated up by the accreting matter, and 2) a non-photospheric continuum radiated by a hot spot with temperature lower than 10000 K. The true level of the veiling continuum can be derived by measuring the weakest photospheric lines with equivalent widths down to 10 mÅ. A limited spectral resolution and/or low signal-to-noise ratio results in overestimation of the veiling continuum. In the three very active stars, the veiling continuum is a minor contributor to the observed veiling, while the major contribution comes from the line-dependent veiling.
10 pages, 10 figures. Accepted for publication in Astronomy and Astrophysics
References in corpus (8)
- UV excess measures of accretion onto young very low-mass stars and brown dwarfs
- Results of the ROTOR-program. I. The long-term photometric variability of classical T Tauri stars
- The Gaia FGK Benchmark Stars - High resolution spectral library
- Unveiling extremely veiled T Tauri stars
- Facing the wind of the pre-FUor V1331 Cyg
- An Association in the Aquila Star-Forming Region: High Resolution Infrared Spectroscopy of T Tauri Stars
- Dust rings and filaments around the isolated young star V1331 Cygni
- Hubble imaging of V1331 Cygni: Proper motion study of its circumstellar structures
Cited by in corpus (20)
- The GRAVITY Young Stellar Object survey. VII. The inner dusty disks of T Tauri stars
- A robust, template-free approach to precise radial velocity extraction
- On the Mass Accretion Rates of Herbig Ae/Be Stars. Magnetospheric Accretion or Boundary Layer?
- New insights on the near-infrared veiling of young stars using CFHT/SPIRou data
- PTF 14jg: The Remarkable Outburst and Post-Burst Evolution of a Previously Anonymous Galactic Star
- The ESO SupJup Survey II: The 12C/13C ratios of three young brown dwarfs with CRIRES
- Star-disk interaction in the T Tauri star V2129 Oph: An evolving accretion-ejection structure
- Stable accretion and episodic outflows in the young transition disk system GM Aurigae
- The accretion process in the DQ Tau binary system
- S Coronae Australis -- a T Tauri Twin
- Flares of accretion activity of the 20 Myr old UXOR RZ Psc
- Inhomogeneous dust eclipses in young stars. The case of CQ Tauri
- Misalignment of the outer disk of DK Tau and a first look at its magnetic field using spectropolarimetry
- Accretion variability in RU Lup
- Young Stars near Cometary Globule CG 30 in the Tumultuous Gum Nebula
- Star-disk interactions in the strongly accreting T Tauri Star S CrA N
- Short- and long-term variations of the high mass accretion rate classical T Tauri star DR Tau
- Accretion in low-mass members of the Orion Nebula Cluster with young transition disks
- Accretion process, magnetic fields, and apsidal motion in the pre-main sequence binary DQ Tau
- Beyond the dips of V807 Tau, a spectropolarimetric study of a dipper s magnetosphere