Low sulfur depletion in the Horsehead PDR
arXiv:astro-ph/0605716 · doi:10.1051/0004-6361:20065260
Abstract
We present 3.65''x3.34'' angular-resolution IRAM PdBI observations of the CS J=2-1 line toward the Horsehead Photodissociation Region (PDR), complemented with IRAM-30m single-dish observations of several rotational lines of CS, C34S and HCS+. We analyse the CS and HCS+ photochemistry, excitation and radiative transfer to obtain their abundances and the physical conditions prevailing in the cloud edge. Since the CS abundance scales to that of sulfur, we determine the gas phase sulfur abundance in the PDR, an interesting intermediate medium between translucent clouds (where sulfur remains in the gas phase) and dark clouds (where large depletions have been invoked). A nonlocal non-LTE radiative transfer code including dust and cosmic background illumination adapted to the Horsehead geometry has been developed to carefuly analyse the CS, C34S, HCS+ and C18O rotational line emission. We use this model to consistently link the line observations with photochemical models to determine the CS/HCS+/S/S+ structure of the PDR. The combination of CS, C34S and HCS+ observations together with the inclusion of the most recent CS collisional and chemical rates in our models implies that sulfur depletion invoked to account for CS and HCS+ abundances is much smaller than in previous studies.
20 pages, 17 figures, accepted in A&A, 2006 June 9 (Figs 1 & 4 are bitmaped)
References in corpus (1)
Cited by in corpus (52)
- Modeling Sulfur Depletion in Interstellar Clouds
- Compression and ablation of the photo-irradiated cloud the Orion Bar
- Tracing shocks and photodissociation in the Galactic center region
- The chemistry and spatial distribution of small hydrocarbons in UV-irradiated molecular clouds: the Orion Bar PDR
- Sulphur-bearing molecules in diffuse molecular clouds: new results from SOFIA/GREAT and the IRAM 30 m telescope
- Sulfur chemistry in protoplanetary disks: CS and H2CS
- Disks around CQ Tau and MWC 758: dense PDR or gas dispersal?
- Herschel observations of EXtraordinary Sources: Analysis of the full Herschel/HIFI molecular line survey of Sagittarius B2(N)
- The penetration of FUV radiation into molecular clouds
- Multi-molecule ALMA observations towards the Seyfert 1 galaxy NGC 1097
- Chemical composition and mixing in giant HII regions: NGC3603, 30Doradus, and N66
- Gas phase Elemental abundances in Molecular cloudS (GEMS). II. On the quest for the sulphur reservoir in molecular clouds: the case
- HCO mapping of the Horsehead : Tracing the illuminated dense molecular cloud surfaces
- Chemical Modelling of Young Stellar Objects, I. Method and Benchmarks
- First detection of interstellar S2H
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VII. Sulfur elemental abundance
- Modelling the sulphur chemistry evolution in Orion KL
- Atomic Diagnostics of X-ray Irradiated Protoplanetary Disks
- Dust processing in photodissociation regions - Mid-IR emission modelling
- Orbital and physical properties of the Ori Aa,Ab,B triple system
- Gas phase Elemental abundances in Molecular cloudS (GEMS). IV. Observational results and statistical trends
- Bottlenecks to interstellar sulfur chemistry: Sulfur-bearing hydrides in UV-illuminated gas and grains
- The role of C/O in nitrile astrochemistry in PDRs and planet-forming disks
- A new study of the chemical structure of the Horsehead nebula: the influence of grain-surface chemistry
- Gas-phase Elemental abundances in Molecular cloudS (GEMS) III. Unlocking the CS chemistry: the CS+O reaction
- Sulphur-rich cold gas around the hot core precursor G328.2551-0.5321. An APEX unbiased spectral survey of the 2 mm, 1.2 mm, and 0.8 mm atmospheric windows
- Anomalous HCN emission from warm giant molecular clouds
- H2CS deuteration maps towards the pre-stellar core L1544
- AB Aur, a Rosetta stone for studies of planet formation (II): HS detection and sulfur budget
- Physical and chemical differentiation of the luminous star-forming region W49A - Results from the JCMT Spectral Legacy Survey
- The extremely sharp transition between molecular and ionized gas in the Horsehead nebula
- HS observations in young stellar disks in Taurus
- ALMA ACA study of the HS/OCS ratio in low-mass protostars
- The chemical footprint of the star formation feedback in M 82 on scales of 100 pc
- JWST observations of the Horsehead photon-dominated region I. First results from multi-band near- and mid-infrared imaging
- Millimeter Spectral Line Mapping Observations Toward Four Massive Star Forming HII Regions
- Evolution of Chemistry in the envelope of Hot Corinos (ECHOS). I. Extremely young sulphur chemistry in the isolated Class 0 object B335
- The ortho-to-para ratio of interstellar NH: Quasi-classical trajectory calculations and new simulations
- An ALCHEMI inspection of sulphur-bearing species towards the central molecular zone of NGC 253
- Design and Implementation of a New Apparatus for Astrochemistry: Kinetic Measurements of the CH + OCS Reaction and Frequency Comb Spectroscopy in a Cold Uniform Supersonic Flow
- Sulfur-bearing molecules in a sample of early star-forming cores
- The sulfur plume in the Horsehead nebula: New detections of SH, SH, and CO
- Toward a robust physical and chemical characterization of heterogeneous lines of sight: The case of the Horsehead nebula
- Star Formation Near Photodissociation Regions: Detection of a Peculiar Protostar Near Ced 201
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VIII. Unlocking the CS chemistry: the CH + S CS + H and C + S CS + C reactions
- Protostellar Interferometric Line Survey of the Cygnus-X region (PILS-Cygnus) -- The role of the external environment in setting the chemistry of protostars
- Molecules with ALMA at Planet-forming Scales (MAPS) XII: Inferring the C/O and S/H ratios in Protoplanetary Disks with Sulfur Molecules
- The Chemistry and Kinematics of Two Molecular Clouds near Sagittarius A*
- Weak, extended water vapor emission in the Horsehead nebula
- Reflections on future problems in cluster science
- JWST observations of photodissociation regions III. Dust modelling at the illuminated edge of the Horsehead PDR
- Spatial distribution of organics in the Horsehead nebula: Signposts of chemistry driven by atomic carbon