Polysulfanes on interstellar grains as a possible reservoir of interstellar sulphur
arXiv:1207.5325 · doi:10.1111/j.1365-2966.2012.21712.x
Abstract
The form of depleted sulphur in dense clouds is still unknown. Until now, only two molecules, OCS and SO2, have been detected in interstellar ices but cannot account for the elemental abundance of sulphur observed in diffuse medium. Chemical models suggest that solid H2S is the main form of sulphur in denser sources but observational constraints exist that infirm this hypothesis. We have used the Nautilus gas-grain code in which new chemical reactions have been added, based on recent experiments of H2S ice irradiation with UV photons and high energy protons. In particular, we included the new species Sn, H2Sn and C2S. We found that at the low temperature observed in dense clouds, i.e. 10 K, these new molecules are not efficiently produced and our modifications of the network do not change the previous pre- dictions. At slightly higher temperature, 20 K in less dense clouds or in the proximity of protostars, H2S abundance on the surfaces is strongly decreased in favor of the polysulfanes H2S3. Such a result can also be obtained if the diffusion barriers on the grains are less im- portant. In the context of the life cycle of interstellar clouds and the mixing between diffuse and denser parts of the clouds, the depletion of sulphur in the form of polysulfanes or other sulphur polymers, may have occurred in regions where the temperature is slightly higher than the cold inner parts of the clouds.
Accepted for publication in MNRAS
References in corpus (7)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Formation of methyl formate and other organic species in the warm-up phase of hot molecular cores
- A KInetic Database for Astrochemistry (KIDA)
- Non-thermal desorption from interstellar dust grains via exothermic surface reactions
- Polycylcic Aromatic Hydrocarbons (PAH's) in dense cloud chemistry
- Sulfur depletion in dense clouds and circumstellar regions I. H2S ice abundance and UV-photochemical reactions in the H2O-matrix
- Cold CO in circumstellar disks: On the effects of photodesorption and vertical mixing
Cited by in corpus (33)
- On the reservoir of sulphur in dark clouds : chemistry and elemental abundance reconciled
- Chemical evolution in the early phases of massive star formation. I
- Sulphur chemistry in the L1544 pre-stellar core
- Abundant refractory sulfur in protoplanetary disks
- New extended deuterium fractionation model: assessment at dense ISM conditions and sensitivity analysis
- A new study of an old sink of sulfur in hot molecular cores: the sulfur residue
- Chemistry in disks. XI. Sulfur-bearing species as tracers of protoplanetary disk physics and chemistry: the DM Tau case
- First detection of interstellar S2H
- Modelling the sulphur chemistry evolution in Orion KL
- Detection of CH3SH in protostar IRAS 16293-2422
- A new look at sulphur chemistry in hot cores and corinos
- Detection of interstellar HCS and its metastable isomer HSC: new pieces in the puzzle of sulfur chemistry
- Non-Detection of HCN toward TMC-1: Constraining the Chemistry of Large Carbon-Chain Molecules
- Search for Interstellar monohydric Thiols
- Ammonium hydrosulfide (NH4SH) as a potentially significant sulfur sink in interstellar ices
- Formation of S-bearing complex organic molecules in interstellar clouds via ice reactions with C2H2, HS, and atomic H
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VI. A sulphur journey across star-forming regions: study of thioformaldehyde emission
- AB Aur, a Rosetta stone for studies of planet formation (II): HS detection and sulfur budget
- Sulfur-bearing species in molecular clouds
- ALMA observations of CS in NGC 1068: chemistry and excitation
- Ab initio Study of Ground-State CS Photodissociation Via Highly Excited Electronic States
- Theoretical modelling of the adsorption of neutral and charged sulphur-bearing species on to olivine nanoclusters
- Accurate millimetre and submillimetre rest frequencies for - and -dithioformic acid, HCSSH
- ALMA ACA study of the HS/OCS ratio in low-mass protostars
- First Identification and Chemical Modeling of New Thiol (SH) Bearing Molecule in the Interstellar Medium: Dithioformic Acid
- Formation of carbonyl sulfide (OCS) via SH radicals in interstellar CO-rich ice under dense cloud conditions
- Chemistry During the Gas-rich Stage of Planet Formation
- The HIFI spectral survey of AFGL 2591 (CHESS). III. Chemical structure of the protostellar envelope
- H2S ice sublimation dynamics: experimentally constrained binding energies, entrapment efficiencies, and snowlines
- First detection of HS2 in a cold dark cloud
- Observational studies on S-bearing molecules in massive star forming regions
- New constraints on the initial parameters of low-mass star formation from chemical modeling
- Fine-tuning the complex organic molecule formation: sulfur and CO ice as regulators of surface chemistry