English

Hot Organic Molecules Toward a Young Low-Mass Star: A Look at Inner Disk Chemistry

Astrophysics 2009-11-13 v1

Abstract

Spitzer Space Telescope spectra of the low mass young stellar object (YSO) IRS 46 (L_bol ~ 0.6 L_sun) in Ophiuchus reveal strong vibration-rotation absorption bands of gaseous C2H2, HCN, and CO2. This is the only source out of a sample of ~100 YSO's that shows these features and the first time they are seen in the spectrum of a solar-mass YSO. Analysis of the Spitzer data combined with Keck L- and M-band spectra gives excitation temperatures of > 350 K and abundances of 10(-6)-10(-5) with respect to H2, orders of magnitude higher than those found in cold clouds. In spite of this high abundance, the HCN J=4-3 line is barely detected with the James Clerk Maxwell Telescope, indicating a source diameter less than 13 AU. The (sub)millimeter continuum emission and the absence of scattered light in near-infrared images limits the mass and temperature of any remnant collapse envelope to less than 0.01 M_sun and 100 K, respectively. This excludes a hot-core type region as found in high-mass YSO's. The most plausible origin of this hot gas rich in organic molecules is in the inner (<6 AU radius) region of the disk around IRS 46, either the disk itself or a disk wind. A nearly edge-on 2-D disk model fits the spectral energy distribution (SED) and gives a column of dense warm gas along the line of sight that is consistent with the absorption data. These data illustrate the unique potential of high-resolution infrared spectroscopy to probe organic chemistry, gas temperatures and kinematics in the planet-forming zones close to a young star.

Keywords

Cite

@article{arxiv.astro-ph/0511786,
  title  = {Hot Organic Molecules Toward a Young Low-Mass Star: A Look at Inner Disk Chemistry},
  author = {F. Lahuis and E. F. van Dishoeck and A. C. A. Boogert and K. M. Pontoppidan and G. A. Blake and C. P. Dullemond and N. J. Evans and M. R. Hogerheijde and J. K. Joergensen and J. E. Kessler-Silacci and C. Knez},
  journal= {arXiv preprint arXiv:astro-ph/0511786},
  year   = {2009}
}

Comments

4 pages, 4 figures; To appear in Astrophysical Journal Letters