Reactive Desorption and Radiative Association as Possible Drivers of Complex Molecule Formation in the Cold Interstellar Medium
arXiv:1303.7266 · doi:10.1088/0004-637X/769/1/34
Abstract
The recent discovery of terrestrial-type organic species such as methyl formate and dimethyl ether in the cold interstellar gas has proved that the formation of organic matter in the Galaxy begins at a much earlier stage of star formation than was thought before. This discovery represents a challenge for astrochemical modelers. The abundances of these molecules cannot be explained by the previously developed "warm-up" scenario, in which organic molecules are formed via diffusive chemistry on surfaces of interstellar grains starting at 30 K, and then released to the gas at higher temperatures during later stages of star formation. In this article, we investigate an alternative scenario in which complex organic species are formed via a sequence of gas-phase reactions between precursor species formed on grain surfaces and then ejected into the gas via efficient reactive desorption, a process in which non-thermal desorption occurs as a result of conversion of the exothermicity of chemical reactions into the ejection of products from the surface. The proposed scenario leads to reasonable if somewhat mixed results at temperatures as low as 10 K and may be considered as a step towards the explanation of abundances of terrestrial-like organic species observed during the earliest stages of star formation.
23 pages, 5 figures, accepted to ApJ
References in corpus (7)
- Complex Chemistry in Star-Forming Regions: An Expanded Gas-Grain Warm-up Chemical Model
- Formation of methyl formate and other organic species in the warm-up phase of hot molecular cores
- Non-thermal desorption from interstellar dust grains via exothermic surface reactions
- Polycylcic Aromatic Hydrocarbons (PAH's) in dense cloud chemistry
- Discovery of Fulminic Acid, HCNO, in Dark Clouds
- Chemistry in Protoplanetary Disks: A Sensitivity Analysis
- Sensitivity analyses of dense cloud chemical models
Cited by in corpus (134)
- Formation of complex organic molecules in cold objects: the role of gas phase reactions
- Astrochemistry During the Formation of Stars
- The origin of complex organic molecules in prestellar cores
- Complex organic molecules in protoplanetary disks
- Binding energies: new values and impact on the efficiency of chemical desorption
- Formation of Complex Molecules in Prestellar Cores: a Multilayer Approach
- The Spatial Distribution of Complex Organic Molecules in the L1544 Pre-stellar Core
- Dust as interstellar catalyst I. Quantifying the chemical desorption process
- Modeling Complex Organic Molecules in dense regions: Eley-Rideal and complex induced reaction
- Formation of complex organic molecules in hot molecular cores through nondiffusive grain-surface and ice-mantle chemistry
- Astrochemistry of dust, ice and gas: introduction and overview
- UV photodesorption of methanol in pure and CO-rich ices: desorption rates of the intact molecule and of the photofragments
- Seeds Of Life In Space (SOLIS): The organic composition diversity at 300--1000 au scale in Solar-type star forming regions
- Formation of Complex Organic Molecules in Cold Interstellar Environments through non-diffusive grain-surface and ice-mantle chemistry
- Chemical evolution in the early phases of massive star formation. I
- The genealogical tree of ethanol: gas-phase formation of glycolaldehyde, acetic acid and formic acid
- Complex organic molecules in the Galactic Centre: the N-bearing family
- Seeds of Life in Space (SOLIS) III. Formamide in protostellar shocks: evidence for gas-phase formation
- Can Formamide Be Formed on Interstellar Ice? An Atomistic Perspective
- Formation and recondensation of complex organic molecules during protostellar luminosity outbursts
- A New Reference Chemical Composition for TMC-1
- The Perseus ALMA Chemistry Survey (PEACHES). I. The Complex Organic Molecules in Perseus Embedded Protostars
- On Cosmic Ray-Driven Grain Chemistry in Cold Core Models
- Formation of Glycerol through Hydrogenation of CO ice under Prestellar Core Conditions
- Chemical differentiation in a prestellar core traces non-uniform illumination
- Complex organics in IRAS 4A revisited with ALMA and PdBI: Striking contrast between two neighbouring protostellar cores
- The census of complex organic molecules in the solar type protostar IRAS16293-2422
- Chemical Evolution in High-Mass Star-Forming Regions: Results from the MALT90 Survey
- The interstellar chemistry of H2C3O isomers
- Chemistry in disks. XI. Sulfur-bearing species as tracers of protoplanetary disk physics and chemistry: the DM Tau case
- Water deuteration and ortho-to-para nuclear spin ratio of H2 in molecular clouds formed via the accumulation of HI gas
- Methanol Along the Path from Envelope to Protoplanetary Disc
- Prevalence of Complex Organic Molecules in Starless and Prestellar Cores within the Taurus Molecular Cloud
- Direct measurement of desorption and diffusion energies of O and N atoms physisorbed on amorphous surfaces
- The (impossible?) formation of acetaldehyde on the grain surfaces: insights from quantum chemical calculations
- Chemistry in Disks. IX. Observations and modeling of HCO+ and DCO+ in DM Tau
- O-bearing complex organic molecules at the cyanopolyyne peak of TMC-1: detection of C2H3CHO, C2H3OH, HCOOCH3, and CH3OCH3
- Quantum mechanical simulations of the radical-radical chemistry on icy surfaces
- Reactive Desorption of CO Hydrogenation Products under Cold Pre-stellar Core Conditions
- Impulsive Spot Heating and Thermal Explosion of Interstellar Grains Revisited
- Evolutionary study of complex organic molecules in high-mass star-forming regions
- Grain Surface Reactions in Molecular Clouds: The Effect of Cosmic Rays and Quantum Tunneling
- Efficiency of non-thermal desorptions in cold-core conditions. Testing the sputtering of grain mantles induced by cosmic rays
- The origin of gas-phase HCO and CH3O radicals in prestellar cores
- Gas-phase CO depletion and N2H+ abundances in starless cores
- Reactivity of OH and CH3OH between 22 and 64 K: Modelling the gas phase production of CH3O in Barnard 1b
- Chemical complexity induced by efficient ice evaporation in the Barnard 5 molecular cloud
- Phosphorus-bearing molecules in massive dense cores
- Astrochemistry at work in the L1157-B1 shock: acetaldehyde formation
- Gas-phase formation of acetaldehyde: review and new theoretical computations
- The complex chemistry of outflow cavity walls exposed: the case of low-mass protostars
- Mapping deuterated methanol toward L1544: I. Deuterium fraction and comparison with modeling
- Interstellar Simulations Using A Unified Microscopic-Macroscopic Monte Carlo Model with a full Gas-Grain Network including Bulk Diffusion in Ice Mantles
- Chemical complexity in high-mass star formation: An observational and modeling case study of the AFGL 2591 VLA 3 hot core
- G11.92-0.61-MM2: A Bonafide Massive Prestellar Core?
- The GUAPOS project: G31.41+0.31 Unbiased ALMA sPectral Observational Survey -- I. Isomers of CHO
- Thermal desorption of formamide and methylamine from graphite and amorphous water ice surfaces
- Deuteration of ammonia with D atoms on oxidized partly ASW covered graphite surface
- Chemical and physical characterization of collapsing low-mass prestellar dense cores
- First ALMA maps of HCO, an important precursor of complex organic molecules, towards IRAS 16293-2422
- Where does the energy go during the interstellar NH formation on water ice? A computational study
- Detection of the HCNH and HCNH ions in the L1544 pre-stellar core
- Unified Microscopic-Macroscopic Monte Carlo Simulations of Complex Organic Molecule Chemistry in Cold Cores
- On the origin of phosphorus nitride in star-forming regions
- The detection of a hot molecular core in the extreme outer Galaxy
- Hydrogenation of accreting C-atoms and CO molecules -- simulating ketene and acetaldehyde formation under dark and translucent cloud conditions
- A three-phase approach to grain surface chemistry in protoplanetary disks: Gas, ice surfaces and ice mantles of dust grains
- A twist on the reaction of the CN radical with methylamine in the interstellar medium: new hints from a state-of-the-art quantum-chemical study
- Organic species in Infrared Dark Clouds
- The complex organic molecular content in the L1498 starless core
- Influence of surface coverage on the chemical desorption process
- Chemical modeling for predicting the abundances of certain aldimines and amines in hot cores
- Establishing the evolutionary timescales of the massive star formation process through chemistry
- Weak maser emission of methyl formate toward Sagittarius B2(N) in the Green Bank Telescope PRIMOS Survey
- Detection of Complex Organic Molecules in Young Starless Core L1521E
- Seeds of Life in Space (SOLIS). III. Zooming into the methanol peak of the pre-stellar core L1544
- Simulations of ice chemistry in cometary nuclei
- The complex organic molecular content in the L1517B starless core
- Widespread Presence of Glycolaldehyde and Ethylene Glycol Around Sagittarius B2
- An unbiased spectral line survey observation toward the low-mass star-forming region L1527
- Low-temperature Condensation of Carbon
- Detection of ethanol, acetone, and propanal in TMC-1: New O-bearing complex organics in cold sources
- Complex organic molecules along the accretion flow in isolated and externally irradiated protoplanetary disks
- Chemistry and physics of a low-metallicity hot core in the Large Magellanic Cloud
- Efficient methanol production on the dark side of a prestellar core
- How chemistry influences cloud structure, star formation, and the IMF
- A New "Non-energetic" Route to Complex Organic Molecules in Astrophysical Environments: The C + HO HCO Solid-state Reaction
- Evolution of complex organic molecules in hot molecular cores: Synthetic spectra at (sub-)mm wavebands
- The Serpens filament: at the onset of slightly supercritical collapse
- Destruction of dimethyl ether and methyl formate by collisions with He
- Methanol Mapping in Cold Cores: Testing Model Predictions
- The quest for a plausible formation route of formyl cyanide in the interstellar medium: a state-of-the-art quantum-chemical and kinetic approach
- Chemistry in a forming protoplanetary disk: main accretion phase
- ALMA-IMF XI: The sample of hot core candidates A rich population of young high-mass proto-stars unveiled by the emission of methyl formate
- The effect of selective desorption mechanisms during interstellar ice formation
- A Revised Description of the Cosmic Ray-Induced Desorption of Interstellar Ices
- Gas phase Elemental abundances in Molecular cloudS (GEMS) V. Methanol in Taurus
- Complex organic molecules detected in twelve high-mass star-forming regions with Atacama Large Millimeter/submillimeter Array (ALMA)
- Water and Methanol Ice in L1544
- The Effective Surface Area of Amorphous Solid Water Measured by the Infrared Absorption of Carbon Monoxide
- Chemical and radiative transfer modeling of Propylene Oxide
- Impact of PAH photodissociation on the formation of small hydrocarbons in the Orion Bar and the Horsehead PDRs
- Modelling methanol and hydride formation in the JWST Ice Age era
- Detection of protonated formaldehyde in the prestellar core L1689B
- Depletion and fractionation of nitrogen in collapsing cores
- Chemical modeling of the complex organic molecules in the extended region around Sagittarius B2
- The Molecular Composition of Shadowed Protosolar Disk Midplanes beyond the Water Snowline
- Cosmic ray tracks in astrophysical ices: Modeling with the Geant4-DNA Monte Carlo Toolkit
- The chemical structure of the Class 0 protostellar envelope NGC 1333 IRAS 4A
- Sensitivity of gas-grain chemical models to surface reaction barriers: Effect from a key carbon-insertion reaction, C + H CH
- Correlations of Methyl Formate (CH3OCHO), Dimethyl Ether (CH3OCH3) and Ketene (H2CCO) in High-mass Star-forming Regions
- Icy molecule desorption in interstellar grain collisions
- Vacuum ultraviolet photodesorption and photofragmentation of formaldehyde-containing ices
- Astrochemical Kinetic Grid Models of Groups of Observed Molecular Abundances: Taurus Molecular Cloud 1 (TMC-1)
- Linking ice and gas in the Lambda Orionis Barnard 35A cloud
- Cosmic-ray-induced dissociation and reactions in warm interstellar ices
- Dark cloud-type chemistry in PDRs with moderate UV field
- Using HCO isotopologues as tracers of gas depletion in protoplanetary disk gaps
- Ice Age : Chemo-dynamical modeling of Cha-MMS1 to predict new solid-phase species for detection with JWST
- The HIFI spectral survey of AFGL 2591 (CHESS). III. Chemical structure of the protostellar envelope
- On Modelling Sputtering of Interstellar Grain Ices
- Simulation of CHOH ice UV photolysis under laboratory conditions
- Detectability of deuterated water in prestellar cores
- Impact of HAC evolution on the formation of small hydrocarbons in the Orion Bar and the Horsehead PDRs
- Chemical exploration of Galactic cold cores
- Rotational spectroscopy of the HCCO and DCCO radicals in the millimeter and submillimeter range
- Complex Organic Molecules Formation in Cold Cores on Stochastically Heated Grains
- The Cosmic-Ray Induced Sputtering Process On Icy Grains
- Optical properties and dust temperatures in clumpy diffuse medium
- Complex Organic Molecules towards the central molecular zone of NGC 253
- Fine-tuning the complex organic molecule formation: sulfur and CO ice as regulators of surface chemistry
- Chemistry of Dark Molecular Clouds
- Methanol formation chemistry with revised reactions scheme
- About explosive delayed desorption from methane-doped argon matrices