Gas and Dust Absorption in the DoAr 24E System
arXiv:1212.3629 · doi:10.1088/0004-637X/760/1/88
Abstract
We present findings for DoAr 24E, a binary system that includes a classical infrared companion. We observed the DoAr 24E system with the Spitzer Infrared Spectrograph (IRS), with high-resolution, near-infrared spectroscopy of CO vibrational transitions, and with mid-infrared imaging. The source of high extinction toward infrared companions has been an item of continuing interest. Here we investigate the disk structure of DoAr 24E using the column densities, temperature, and velocity profiles of two CO absorption features seen toward DoAr 24Eb. We model the SEDs found using T-ReCS imaging, and investigate the likely sources of extinction toward DoAr 24Eb. We find the lack of silicate absorption and small CO column density toward DoAr 24Eb suggest the mid-infrared continuum is not as extinguished as the near-infrared, possibly due to the mid-infrared originating from an extended region. This, along with the velocity profile of the CO absorption, suggests the source of high extinction is likely due to a disk or disk wind associated with DoAr 24Eb.
8 pages, 6 figures. Accepted for publication in ApJ
References in corpus (6)
- Spitzer IRS Spectra and Envelope Models of Class I Protostars in Taurus
- Formation of simple organic molecules in inner T Tauri disks
- High-precision C17O, C18O and C16O measurements in young stellar objects: analogues for CO self-shielding in the early solar system
- Warm HCN, C2H2, and CO in the disk of GV Tau
- Stellar and Circumstellar Properties of the Pre-Main Sequence Binary GV Tau from Infrared Spectroscopy
- Dust Stratification in Young Circumstellar Disks