Chemical complexity induced by efficient ice evaporation in the Barnard 5 molecular cloud
arXiv:1706.01368 · doi:10.1051/0004-6361/201630023
Abstract
Cold gas-phase water has recently been detected in a cold dark cloud, Barnard 5 located in the Perseus complex, by targeting methanol peaks as signposts for ice mantle evaporation. Observed morphology and abundances of methanol and water are consistent with a transient non-thermal evaporation process only affecting the outermost ice mantle layers, possibly triggering a more complex chemistry. We present the detection of the Complex Organic Molecules (COMs) acetaldehyde and methyl formate as well as formic acid and ketene, and the tentative detection of di-methyl ether towards the methanol hotspot of Barnard 5 located between two dense cores using the single dish OSO 20m, IRAM 30m, and NRO 45m telescopes. The high energy cis- conformer of formic acid is detected, suggesting that formic acid is mostly formed at the surface of interstellar grains and then evaporated. The detection of multiple transitions for each species allows us to constrain their abundances through LTE and non-LTE methods. All the considered COMs show similar abundances between and % relative to methanol depending on the assumed excitation temperature. The non-detection of glycolaldehyde, an isomer of methyl formate, with a [glycolaldehyde]/[methyl formate] abundance ratio lower than 6 %, favours gas phase formation pathways triggered by methanol evaporation. According to their excitation temperatures derived in massive hot cores, formic acid, ketene, and acetaldehyde have been designated as "lukewarm" COMs whereas methyl formate and di-methyl ether were defined as "warm" species. Comparison with previous observations of other types of sources confirms that "lukewarm" and "warm" COMs show similar abundances in low-density cold gas whereas the "warm" COMs tend to be more abundant than the "lukewarm" species in warm protostellar cores.
Accepted for publication in Astronomy and Astrophysics
References in corpus (20)
- Complex Chemistry in Star-Forming Regions: An Expanded Gas-Grain Warm-up Chemical Model
- The ALMA Protostellar Interferometric Line Survey (PILS): First results from an unbiased submillimeter wavelength line survey of the Class 0 protostellar binary IRAS 16293-2422 with ALMA
- Testing grain-surface chemistry in massive hot-core regions
- Observing the gas temperature drop in the high-density nucleus of L 1544
- Formation of complex organic molecules in cold objects: the role of gas phase reactions
- The origin of complex organic molecules in prestellar cores
- The Spatial Distribution of Complex Organic Molecules in the L1544 Pre-stellar Core
- Constraining the abundances of complex organics in the inner regions of solar-type protostars
- Experimental evidence for Glycolaldehyde and Ethylene Glycol formation by surface hydrogenation of CO molecules under dense molecular cloud conditions
- A New Reference Chemical Composition for TMC-1
- Deuterated methanol in the pre-stellar core L1544
- Chemical differentiation in a prestellar core traces non-uniform illumination
- Heavy ion irradiation of crystalline water ice
- Detection of glycolaldehyde towards the solar-type protostar NGC1333 IRAS2A
- Grain Surface Reactions in Molecular Clouds: The Effect of Cosmic Rays and Quantum Tunneling
- Nascent bipolar outflows associated with the first hydrostatic core candidates Barnard 1b-N and 1b-S
- Trans-cis molecular photoswitching in interstellar Space
- Submillimeter Spectrum of Formic Acid
- Ethylene oxide and Acetaldehyde in hot cores
- Cold Water Vapor in the Barnard 5 Molecular Cloud
Cited by in corpus (14)
- Formation of Complex Organic Molecules in Cold Interstellar Environments through non-diffusive grain-surface and ice-mantle chemistry
- Discovery of HC4NC in TMC-1: A study of the isomers of HC3N, HC5N, and HC7N
- Evolutionary study of complex organic molecules in high-mass star-forming regions
- Discovery of the elusive carbonic acid (HOCOOH) in space
- Detection of ethanol, acetone, and propanal in TMC-1: New O-bearing complex organics in cold sources
- The Role of Radiolysis in the Modelling of CHO Isomers and Dimethyl Ether in Cold Dark Clouds
- A sensitive 3 mm line survey of L483: a broad view of the chemical composition of a core around a Class 0 object
- Extension of the HCOOH and CO2 solid-state reaction network during the CO freeze-out stage: inclusion of H2CO
- Anharmonic Vibrational Spectrum and Experimental Matrix Isolation Study of Thioformic Acid Conformers -- Potential Candidates for Molecular Cloud and Solar System Observations?
- Methoxymethanol Formation Starting from CO-Hydrogenation
- A New Method for Simulating Photoprocesses in Astrochemical Models
- On Modelling Sputtering of Interstellar Grain Ices
- Carbon-Chain Chemistry vs. Complex-Organic-Molecule Chemistry in Envelopes around Three Low-Mass Young Stellar Objects in the Perseus Region
- Detection of antifreeze molecule ethylene glycol in the hot molecular core G358.930.03 MM1