High-pressure, low-abundance water in bipolar outflows. Results from a Herschel-WISH survey
arXiv:1301.5322 · doi:10.1051/0004-6361/201220422
Abstract
(Abridged) We present a survey of the water emission in a sample of more than 20 outflows from low mass young stellar objects with the goal of characterizing the physical and chemical conditions of the emitting gas. We have used the HIFI and PACS instruments on board the Herschel Space Observatory to observe the two fundamental lines of ortho-water at 557 and 1670 GHz. These observations were part of the "Water In Star-forming regions with Herschel" (WISH) key program, and have been complemented with CO and H2 data. We find that the emission from water has a different spatial and velocity distribution from that of the J=1-0 and 2-1 transitions of CO, but it has a similar spatial distribution to H2, and its intensity follows the H2 intensity derived from IRAC images. This suggests that water traces the outflow gas at hundreds of kelvins responsible for the H2 emission, and not the component at tens of kelvins typical of low-J CO emission. A warm origin of the water emission is confirmed by a remarkable correlation between the intensities of the 557 and 1670 GHz lines, which also indicates the emitting gas has a narrow range of excitations. A non-LTE radiative transfer analysis shows that while there is some ambiguity on the exact combination of density and temperature values, the gas thermal pressure nT is constrained within less than a factor of 2. The typical nT over the sample is 4 10^{9} cm^{-3}K, which represents an increase of 10^4 with respect to the ambient value. The data also constrain within a factor of 2 the water column density. When this quantity is combined with H2 column densities, the typical water abundance is only 3 10^{-7}, with an uncertainty of a factor of 3. Our data challenge current C-shock models of water production due to a combination of wing-line profiles, high gas compressions, and low abundances.
21 pages, 13 figures. Accepted for publication in A&A
References in corpus (12)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- First detection of water vapor in a pre-stellar core
- Shells, jets, and internal working surfaces in the molecular outflow from IRAS 04166+2706
- The CHESS survey of the L1157-B1 shock region: CO spectral signatures of jet-driven bowshocks
- Highly Collimated Jets and Wide-Angle Outflows in HH46/47: New Evidence from Spitzer IR Images
- Mapping warm molecular hydrogen with Spitzer's Infrared Array Camera (IRAC)
- SWAS Observations of Water in Molecular Outflows
- Mapping water in protostellar outflows with Herschel: PACS and HIFI observations of L1448-C
- H2O line mapping at high spatial and spectral resolution - Herschel observations of the VLA1623 outflow
- Star formation in the vicinity of the IC 348 cluster
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- The CHESS survey of the L1157-B1 bow-shock: high and low excitation water vapor
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- JWST Observations of Young protoStars (JOYS): overview of program and early results
- Origin of warm and hot gas emission from low-mass protostars: Herschel-HIFI observations of CO J=16-15. I. Line profiles, physical conditions, and H2O abundance
- ALMA Observations of Massive Clouds in the Central Molecular Zone: Ubiquitous Protostellar Outflows
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- JWST Observations of Young protoStars (JOYS). HH 211: the textbook case of a protostellar jet and outflow
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- Feedback of molecular outflows from protostars in NGC 1333, revealed by Herschel and Spitzer spectro-imaging observations
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- The shocked gas of the BHR71 outflow observed by Herschel: indirect evidence for an atomic jet
- Herschel observations of the circumstellar environment of the two Herbig Be stars R Mon and PDS27
- Proper Motions of Young Stellar Outflows in the Mid-Infrared with Spitzer. II. HH 377/Cep E