On the origin of [Ne II] emission in young stars: mid-infrared and optical observations with the Very Large Telescope
arXiv:1205.2182 · doi:10.1051/0004-6361/201118329
Abstract
{Abridged version for ArXiv}. We provide direct constraints on the origin of the [Ne II] emission in 15 young stars using high-spatial and spectral resolution observations with VISIR at the VLT that allow us to study the kinematics of the emitting gas. In addition we compare the [Ne II] line with optical forbidden lines observed for three stars with UVES. The [Ne II] line was detected in 7 stars, among them the first confirmed detection of [Ne II] in a Herbig Be star, V892 Tau. In four cases, the large blueshifted lines indicate an origin in a jet. In two stars, the small shifts and asymmetric profiles indicate an origin in a photo-evaporative wind. CoKu Tau 1, seen close to edge-on, shows a spatially unresolved line centered at the stellar rest velocity, although cross-dispersion centroids move within 10 AU from one side of the star to the other as a function of wavelength. The line profile is symmetric with wings extending up to about +-80 km/s. The origin of the [Ne II] line could either be due to the bipolar jet or to the disk. For the stars with VLT-UVES observations, in several cases, the optical forbidden line profiles and shifts are very similar to the profile of the [Ne II] line, suggesting that the lines are emitted in the same region. A general trend observed with VISIR is a lower line flux when compared with the fluxes obtained with Spitzer. We found no correlation between the line full-width at half maximum and the line peak velocity. The [Ne II] line remains undetected in a large part of the sample, an indication that the emission detected with Spitzer in those stars is likely extended.
Accepted for publication in Astronomy & Astrophysics; revised version: corrected minor typos, corrected center values (col 3) for CoKuTau1 in Table 5
References in corpus (16)
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Search for Associations Containing Young stars (SACY): I. Sample & Searching Method
- Photoevaporation of protoplanetary discs I: hydrodynamic models
- H2O and OH gas in the terrestrial planet-forming zones of protoplanetary disks
- Line Emission from Gas in Optically Thick Dust Disks around Young Stars
- c2d Spitzer IRS Spectra of Disks around T Tauri Stars. III. [Ne II], [Fe I], and H_2 gas-phase lines
- Neon Fine-Structure Line Emission By X-ray Irradiated Protoplanetary Disks
- A kinematic study of the Taurus-Auriga T association
- Disk Dispersal and Planet Formation Time Scales
- [NeII] emission line profiles from photoevaporative disc winds
- High-resolution Spectroscopy of [Ne II] Emission from TW Hya
- A Multi-Epoch HST Study of the Herbig-Haro Flow from XZ Tauri
- An outflow origin of the [NeII] emission in the T Tau triplet
- Discovery of a Circumbinary Disk around Herbig Ae/Be system v892 Tau
- Velocities from Cross-Correlation: A Guide for Self-Improvement
- Fine-Structure Line Emission from the Outflows of Young Stellar Objects
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- FUV and X-ray irradiated protoplanetary disks: a grid of models II - Gas diagnostic line emission
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