Near-IR Molecular Hydrogen Emission of Protostars: Probing Circumstellar Environments
arXiv:1010.2174 · doi:10.1088/0004-637X/725/1/1100
Abstract
We present new observations of near-infrared molecular hydrogen (H2) line emission in a sample of 18 Class I and flat-spectrum low mass protostars, primarily in the Tau- Aur and ρ Oph dark clouds. The line emission is extended by up to several arcseconds (several hundred AU) for most objects, and there is little night-to-night variation in line strength coincident with the continuum point source. Flux ratios of H2 v = 2 - 1 S(1) and v = 1 - 0 S(1) lines are consistent with this emission arising in jets or winds in many objects. However, most objects have only small offsets (under 10 km s-1) between their H2 and photospheric radial velocities. No objects have line ratios which are clearly caused solely by UV excitation, but the H2 emission of several objects may be caused by UV or X-ray excitation in the presence of circumstellar dust. There are several objects in the sample whose observed velocities and line fluxes suggest quiescent, non-mechanical origins for their molecular hydrogen emissions. Overall we find the H2 emission properties of these protostars to be similar to the T Tauri stars studied in previous surveys.
Accepted by ApJ. 15 papes of text plus 5 figures and 2 tables
References in corpus (16)
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Photoevaporation of protoplanetary discs I: hydrodynamic models
- Line Emission from Gas in Optically Thick Dust Disks around Young Stars
- Spitzer observations of HH54 and HH7-11: mapping the H2 ortho-to-para ratio in shocked molecular gas
- 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
- On the Distance to the Ophiuchus Star-Forming Region
- Spatially Resolved Molecular Hydrogen Emission in the Inner 200AU Environments of Classical T Tauri Stars
- Modeling T Tauri Winds from He I 10830 Profiles
- The Origins of Fluorescent H2 Emission From T Tauri~Stars
- High-resolution Spectroscopy of [Ne II] Emission from TW Hya
- An outflow origin of the [NeII] emission in the T Tau triplet
- Investigating the transport of angular momentum from young stellar objects: do H2 jets from Class I YSOs rotate?
- Quiescent H2 Emission From Pre-Main Sequence Stars in Chamaeleon I
- Results from Droxo. I. The variability of fluorescent Fe 6.4 keV emission in the young star Elias 29: High-energy electrons in the star's accretion tubes?
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