Methanol maps of low-mass protostellar systems: the Serpens Molecular Core
arXiv:1004.2217 · doi:10.1051/0004-6361/201014182
Abstract
Observations of Serpens have been performed at the JCMT using Harp-B. Maps over a 4.5'x5.4' region were made in a frequency window around 338 GHz, covering the 7-6 transitions of methanol. Emission is extended over each source, following the column density of H2 but showing up also particularly strongly around outflows. The rotational temperature is low, 15-20 K, and does not vary with position within each source. The abundance is typically 10^-9 - 10^-8 with respect to H2 in the outer envelope, whereas "jumps" by factors of up to 10^2 -10^3 inside the region where the dust temperature exceeds 100 K are not excluded. A factor of up to ~ 10^3 enhancement is seen in outflow gas. In one object, SMM4, the ice abundance has been measured to be ~ 3x10^-5 with respect to H2 in the outer envelope, i.e., a factor of 10^3 larger than the gas-phase abundance. Comparison with C18O J=3-2 emission shows that strong CO depletion leads to a high gas-phase abundance of CH3OH not just for the Serpens sources, but for a larger sample of protostars. The observations illustrate the large-scale, low-level desorption of CH3OH from dust grains, extending out to and beyond 7500 AU from each source, a scenario which is consistent with non-thermal (photo-)desorption from the ice. The observations also illustrate the usefulness of CH3OH as a tracer of energetic input in the form of outflows, where methanol is sputtered from the grain surfaces. Finally, the observations provide further evidence of CH3OH formation through CO hydrogenation proceeding on grain surfaces in low-mass envelopes.
Accepted for publication in A&A.
References in corpus (9)
- Formation rates of complex organics in UV irradiated CH3OH-rich ices I: Experiments
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- The c2d Spitzer spectroscopic survey of ices around low-mass young stellar objects II: CO2
- PROSAC: A Submillimeter Array survey of low-mass protostars. II. The mass evolution of envelopes, disks, and stars from the Class 0 through I stages
- Comparing Star Formation on Large Scales in the c2d Legacy Clouds: Bolocam 1.1 mm Dust Continuum Surveys of Serpens, Perseus, and Ophiuchus
- Parametrization of C-shocks. Evolution of the Sputtering of Grains
- Desorption From Interstellar Ices
- Disk and Envelope Structure in Class 0 Protostars: I. The Resolved Massive Disk in Serpens FIRS 1
- Hydrogenation reactions in interstellar CO ice analogues
Cited by in corpus (14)
- Characterizing young protostellar disks with the CALYPSO IRAM-PdBI survey: large Class 0 disks are rare
- Complex organic molecules in low-mass protostars on solar system scales -- I. Oxygen-bearing species
- Wavelength-dependent UV photodesorption of pure N2 and O2 ices
- Characterizing magnetic field morphologies in three Serpens protostellar cores with ALMA
- Chemical and kinematic structure of extremely high-velocity molecular jets in the Serpens Main star-forming region
- Water and methanol in low-mass protostellar outflows: gas-phase synthesis, ice sputtering and destruction
- The complex chemistry of outflow cavity walls exposed: the case of low-mass protostars
- Chemical survey toward young stellar objects in the Perseus molecular cloud complex
- The prebiotic molecular inventory of Serpens SMM1 I. An investigation of the isomers CHNCO and HOCHCN
- Chemistry of a newly detected circumbinary disk in Ophiuchus
- Radiative transfer and molecular data for astrochemistry (Review)
- Precessing Jet and Large Dust Grains in the V380 Ori NE Star-forming Region
- Linking ice and gas in the Lambda Orionis Barnard 35A cloud
- Deep search for hydrogen peroxide toward pre- and protostellar objects -- Testing the pathway of grain surface water formation