The Environment and Nature of the Class I Protostar Elias 29: Molecular Gas Observations and the Location of Ices
arXiv:astro-ph/0201317 · doi:10.1086/339627
Abstract
A (sub-)millimeter line and continuum study of the class I protostar Elias 29 in the Rho Ophiuchi molecular cloud is presented, whose goals are to understand the nature of this source, and to locate the ices that are abundantly present along this line of sight. Within 15-60" beams, several different components contribute to the line emission. Two different foreground clouds are detected, an envelope/disk system and a dense ridge of HCO+ rich material. The latter two components are spatially separated in millimeter interferometer maps. We analyze the envelope/disk system by using inside-out collapse and flared disk models. The disk is in a relatively face-on orientation (<60 degrees), which explains many of the remarkable observational features of Elias 29, such as its flat SED, its brightness in the near infrared, the extended components found in speckle interferometry observations, and its high velocity molecular outflow. It cannot account for the ices seen along the line of sight, however. A small fraction of the ices is present in a (remnant) envelope of mass 0.12-0.33 Msun, but most of the ices (~70%) are present in cool (T<40 K) quiescent foreground clouds. This explains the observed absence of thermally processed ices (crystallized H2O) toward Elias 29. Nevertheless, the temperatures could be sufficiently high to account for the low abundance of apolar (CO, N2, O2) ices. This work shows that it is crucial to obtain spectrally and spatially resolved information from single-dish and interferometric molecular gas observations in order to determine the nature of protostars and to interpret infrared ISO satellite observations of ices and silicates along a pencil beam.
17 pages, prepared in emulateapj style Scheduled to appear in ApJ 570 n2, 10 May 2002
References in corpus (1)
Cited by in corpus (48)
- Observations of the Icy Universe
- From Molecular Cores to Planet-forming Disks: A SIRTF Legacy Program
- ISO spectroscopy of gas and dust: from molecular clouds to protoplanetary disks
- A Keplerian disk around a Class 0 source: ALMA observations of VLA1623A
- Ices in the edge-on disk CRBR 2422.8-3423: Spitzer spectroscopy and Monte Carlo radiative transfer modeling
- The H2CO abundance in the inner warm regions of low mass protostellar envelopes
- Gas structure inside dust cavities of transition disks: Oph IRS 48 observed by ALMA
- VLT-CRIRES Survey of Rovibrational CO Emission from Protoplanetary Disks
- Measuring Protoplanetary Disk Accretion with H I Pf-beta
- A 3-5m VLT spectroscopic survey of embedded young low mass stars II; OCN
- The nature of the Class I population in Ophiuchus as revealed through gas and dust mapping
- APEX-CHAMP+ high-J CO observations of low-mass young stellar objects: IV. Mechanical and radiative feedback
- APEX-CHAMP+ high-J CO observations of low-mass young stellar objects: I. The HH 46 envelope and outflow
- SMA observations of young disks: separating envelope, disk, and stellar masses in class I YSOs
- Outflow forces of low mass embedded objects in Ophiuchus: a quantitative comparison of analysis methods
- Search for solid HDO in low-mass protostars
- Chemical tracers of episodic accretion in low-mass protostars
- APEX-CHAMP+ high-J CO observations of low-mass young stellar objects: II. Distribution and origin of warm molecular gas
- LIDA - The Leiden Ice Database for Astrochemistry
- The TEXES Survey For H2 Emission From Protoplanetary Disks
- The JCMT Legacy Survey of the Gould Belt: a molecular line study of the Ophiuchus molecular cloud
- WL 17: A Young Embedded Transition Disk
- Observations of nitrogen isotope fractionation in deeply embedded protostars
- Dense and warm molecular gas in the envelopes and outflows of southern low-mass protostars
- A Mid-Infrared Imaging Survey of Embedded Young Stellar Objects in the Rho Ophiuchi Cloud Core
- Detection of abundant solid CO in the disk around CRBR 2422.8-3423
- Sulfur-Bearing Species Tracing the Disk/Envelope System in the Class I Protostellar Source Elias 29
- Direct Determination of the HF/H2 Abundance Ratio in Interstellar Gas
- 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?
- A survey for Fe 6.4 keV emission in young stellar objects in rho Oph: the strong fluorescence from Elias 29
- Probing the Surfaces of Interstellar Dust Grains: The Adsorption of CO at Bare Grain Surfaces
- First Evidence of a Precessing Jet Excavating a Protostellar Envelope
- Fitting infrared ice spectra with genetic modelling algorithms. Presenting the ENIIGMA fitting tool
- 2MASS J17112318-2724315: A Deeply-Embedded Low-Mass Protostellar System in the B59 Molecular Cloud
- Characterizing the velocity field in hydrodynamical simulations of low-mass star formation using spectral line profiles
- A CO (J=3-2) Outflow Survey of the Elias 29 Region
- Near-Infrared Imaging Polarimetry of Young Stellar Objects in rho-Ophiuchi
- Computational modeling of the class I low-mass protostar Elias 29 applying optical constants of ices processed by high energy cosmic ray analogs
- FERIA: Flat Envelope Model with Rotation and Infall under Angular Momentum Conservation
- Modeling water emission from low-mass protostellar envelopes
- A deep X-ray view of the Class I YSO Elias 29 with XMM-Newton and NuSTAR
- The Mid-Infrared Polarization of the Herbig Ae Star WL 16: An Interstellar Origin?
- FAUST XXVI. The dust opacity spectral indices of protostellar envelopes bridge the gap between interstellar medium and disks
- The role of external FUV irradiation in the survival of astrophysical ices in Elias 29
- Ammonia, carbon dioxide and the non-detection of the 2152 cm CO band
- Tracking the evolutionary stage of protostars by the abundances of astrophysical ices
- Gaps and Rings: A Near-Universal Trait of Extended Protoplanetary Discs
- Modeling Molecular-Line Emission from Circumstellar Disks