Efficient Production of S in Interstellar Ices: The effects of cosmic ray-driven radiation chemistry and non-diffusive bulk reactions
arXiv:1911.01239 · doi:10.3847/1538-4357/ab5360
Abstract
In this work, we reexamine sulfur chemistry occurring on and in the ice mantles of interstellar dust grains, and report the effects of two new modifications to standard astrochemical models; namely, (a) the incorporation of cosmic ray-driven radiation chemistry and (b) the assumption of fast, non-diffusive reactions for key radicals in the bulk. Results from our models of dense molecular clouds show that these changes can have a profound influence on the abundances of sulfur-bearing species in ice mantles, including a reduction in the abundance of solid-phase HS and HS, and a significant increase in the abundances of OCS, SO, as well as pure allotropes of sulfur, especially S. These pure-sulfur species - though nearly impossible to observe directly - have long been speculated to be potential sulfur reservoirs and our results represent possibly the most accurate estimates yet of their abundances in the dense ISM. Moreover, the results of these updated models are found to be in good agreement with available observational data. Finally, we examine the implications of our findings with regard to the as-yet-unknown sulfur reservoir thought to exist in dense interstellar environments.
ApJ, accepted: 37 pages, 8 figures
References in corpus (19)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Non-thermal desorption from interstellar dust grains via exothermic surface reactions
- Formation of Complex Molecules in Prestellar Cores: a Multilayer Approach
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- Modeling Sulfur Depletion in Interstellar Clouds
- Sulfur chemistry in protoplanetary disks: CS and H2CS
- Impulsive Spot Heating and Thermal Explosion of Interstellar Grains Revisited
- Modelling the sulphur chemistry evolution in Orion KL
- A new look at sulphur chemistry in hot cores and corinos
- Quantum tunneling during interstellar surface-catalyzed formation of water: the reaction H + HO HO + OH
- H2S in the L1157-B1 Bow shock
- Interstellar Simulations Using A Unified Microscopic-Macroscopic Monte Carlo Model with a full Gas-Grain Network including Bulk Diffusion in Ice Mantles
- Search for Interstellar monohydric Thiols
- The Case of HCO Isomers, Revisited: Solving the Mystery of the Missing Propadienone
- On Simulating the Proton-Irradiation of O and HO Ices Using Astrochemical-type Models, with Implications for Bulk Reactivity
- Sulphur-bearing molecules in AGB stars I: The occurrence of hydrogen sulfide
- Tunneling Reaction Kinetics for the Hydrogen Abstraction Reaction H + HS -> H + HS in the Interstellar Medium
- A new model of the chemistry of ionizing radiation in solids: CIRIS
- Sulfur Chemistry in L1157-B1
Cited by in corpus (50)
- Discovery of the Pure Polycyclic Aromatic Hydrocarbon Indene (-CH) with GOTHAM Observations of TMC-1
- Formation of complex organic molecules in hot molecular cores through nondiffusive grain-surface and ice-mantle chemistry
- Thiols in the ISM: first detection of HC(O)SH and confirmation of CHSH
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VII. Sulfur elemental abundance
- Efficiency of non-thermal desorptions in cold-core conditions. Testing the sputtering of grain mantles induced by cosmic rays
- Photoprocessing of H2S on dust grains: building S chains in translucent clouds and comets
- Sulfur Ice Astrochemistry: A Review of Laboratory Studies
- Gas phase Elemental abundances in Molecular cloudS (GEMS). IV. Observational results and statistical trends
- Isomers in Interstellar Environments (I): The Case of Z- and E-Cyanomethanimine
- The initial gas-phase sulfur abundance in the Orion Molecular Cloud from sulfur radio recombination lines
- The Perseus ALMA Chemical Survey (PEACHES). III. Sulfur-bearing species tracing accretion and ejection processes in young protostars
- Gas-phase Elemental abundances in Molecular cloudS (GEMS) III. Unlocking the CS chemistry: the CS+O reaction
- Methanol Mapping in Cold Cores: Testing Model Predictions
- The Role of Radiolysis in the Modelling of CHO Isomers and Dimethyl Ether in Cold Dark Clouds
- Formation of S-bearing complex organic molecules in interstellar clouds via ice reactions with C2H2, HS, and atomic H
- The SVS13-A Class I chemical complexity as revealed by S-bearing species. SOLIS XIII
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VI. A sulphur journey across star-forming regions: study of thioformaldehyde emission
- Energetic Electron Irradiations of Amorphous and Crystalline Sulphur-Bearing Astrochemical Ices
- The Detection of Hot Molecular Cores in the Small Magellanic Cloud
- Successive H-atom addition to solid OCS on compact amorphous solid water
- HS observations in young stellar disks in Taurus
- Cosmic ray tracks in astrophysical ices: Modeling with the Geant4-DNA Monte Carlo Toolkit
- Classification of X-ray Flare Driven Chemical Variability in Protoplanetary Disks
- Ice mantles on dust grains: dramatic variation of thickness with grain size
- ALMA ACA study of the HS/OCS ratio in low-mass protostars
- Probing the kinematics and chemistry of the hot core Mon R 2 IRS 3 using ALMA observations
- Formation of carbonyl sulfide (OCS) via SH radicals in interstellar CO-rich ice under dense cloud conditions
- Bombardment of CO ice by cosmic rays: I. Experimental insights into the microphysics of molecule destruction and sputtering
- Evolution of Chemistry in the envelope of Hot Corinos (ECHOS). I. Extremely young sulphur chemistry in the isolated Class 0 object B335
- The physical and chemical structure of Sagittarius B2, VIII. Full molecular line survey of hot cores
- Photochemistry of interstellar ice forming Complex Organic Molecules
- Binding Energies and Vibrational Spectral Features of S Species on Amorphous Water-ice Mantles: A Quantum Mechanical Study
- 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
- Simulation of CHOH ice UV photolysis under laboratory conditions
- Ice origins of OCS and chemistry of CS2-bearing ice mantles
- Formation of dust filaments in the diffuse envelopes of molecular clouds
- Sulfur-bearing molecules in a sample of early star-forming cores
- XRISM insights for interstellar Sulfur
- First detection of HS2 in a cold dark cloud
- Protostars at Subsolar Metallicity: First Detection of Large Solid-state Complex Organic Molecules in the Large Magellanic Cloud
- PRODIGE VI -- Envelope to Disk with NOEMA: VI. The Missing Sulfur Problem
- Advancing spectroscopic understanding of HOCS: Laboratory investigations and astronomical implications
- A quest for sulfur-bearing refractory species. Identification of CaS in the interstellar medium
- Observational studies on S-bearing molecules in massive star forming regions
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VIII. Unlocking the CS chemistry: the CH + S CS + H and C + S CS + C reactions
- Expanding the CHO Isomeric Interstellar Inventory: Discovery of Lactaldehyde and Methoxyacetaldehyde in G+0.693-0.027
- Fine-tuning the complex organic molecule formation: sulfur and CO ice as regulators of surface chemistry
- Modeling the UV-photon irradiation of CS-bearing ices in the laboratory with the pyRate gas-grain astrochemical code. New insights into the missing sulfur problem
- Reflections on future problems in cluster science
- Chemistry of Dark Molecular Clouds