Survey of Ices toward Massive Young Stellar Objects: I. OCS, CO, OCN, and CHOH
arXiv:2210.12639 · doi:10.3847/1538-4357/ac9b4a
Abstract
An important tracer of the origin and evolution of cometary ices is the comparison with ices found in dense clouds and towards Young Stellar Objects (YSOs). We present a survey of ices in the 2-5 micron spectra of 23 massive YSOs, taken with the NASA InfraRed Telescope Facility SpeX spectrometer. The 4.90 micron absorption band of OCS ice is detected in 20 sight-lines, more than five times the previously known detections. The absorption profile shows little variation and is consistent with OCS being embedded in CH3OH-rich ices, or proton-irradiated HS or SO-containing ices. The OCS column densities correlate well with those of CHOH and OCN, but not with HO and apolar CO ice. This association of OCS with CHOH and OCN firmly establishes their formation location deep inside dense clouds or protostellar envelopes. The median composition of this ice phase towards massive YSOs, as a percentage of HO, is CO:CHOH:OCN:OCS=24:20:1.53:0.15. CS, due to its low abundance, is likely not the main precursor to OCS. Sulfurization of CO is likely needed, although the source of this sulfur is not well constrained. Compared to massive YSOs, low mass YSOs and dense clouds have similar CO and CHOH ice abundances, but less OCN and more apolar CO, while OCS awaits detection. Comets tend to be under-abundant in carbon-bearing species, but this does not appear to be the case for OCS, perhaps signalling OCS production in protoplanetary disks.
35 pages, 18 figures. Published ApJ 941, 32. Updated arXiv title and publication information
References in corpus (7)
- The c2d Spitzer spectroscopic survey of ices around low-mass young stellar objects II: CO2
- The chemical history of molecules in circumstellar disks. I. Ices
- Modeling Sulfur Depletion in Interstellar Clouds
- Low Temperature Surface Formation of NH3 and HNCO: hydrogenation of nitrogen atoms in CO-rich interstellar ice analogues
- Medium resolution near-infrared spectroscopy of Massive Young Stellar Objects
- Observations of the Onset of Complex Organic Molecule Formation in Interstellar Ices
- Water and Methanol Ice in L1544
Cited by in corpus (17)
- Laboratory and Computational Studies of Interstellar Ices
- Hunt for complex cyanides in protostellar ices with JWST: Tentative detection of CHCN and CHCN
- Ammonium hydrosulfide (NH4SH) as a potentially significant sulfur sink in interstellar ices
- JWST detections of amorphous and crystalline HDO ice toward massive protostars
- A major asymmetric ice trap in a planet-forming disk IV. Nitric oxide gas and a lack of CN tracing sublimating ices and a C/O ratio
- Theoretical modelling of the adsorption of neutral and charged sulphur-bearing species on to olivine nanoclusters
- SO2 and OCS toward high-mass protostars: A comparative study between ice and gas
- JWST reveals widespread CO ice and gas absorption in the Galactic Center cloud G0.253+0.016
- Formation of carbonyl sulfide (OCS) via SH radicals in interstellar CO-rich ice under dense cloud conditions
- Binding Energies and Vibrational Spectral Features of S Species on Amorphous Water-ice Mantles: A Quantum Mechanical Study
- Ice origins of OCS and chemistry of CS2-bearing ice mantles
- PRODIGE VI -- Envelope to Disk with NOEMA: VI. The Missing Sulfur Problem
- The sulfur plume in the Horsehead nebula: New detections of SH, SH, and CO
- JOYS: Linking the molecular ice and gas-phase composition towards the high-mass hot core IRAS 18089-1732
- Fine-tuning the complex organic molecule formation: sulfur and CO ice as regulators of surface chemistry
- Backlighting young stellar objects in the Central Molecular Zone: an ensemble-averaged abundance structure of methanol ices
- Survival of Molecular Complexity under Recent Supernova Feedback: Detection of Hot Cores in RX J1713.7-3946