The c2d Spitzer spectroscopic survey of ices around low-mass young stellar objects II: CO2
arXiv:0711.4616 · doi:10.1086/533431
Abstract
This paper presents Spitzer-IRS spectroscopy of the CO2 15.2 micron bending mode toward a sample of 50 embedded low-mass stars in nearby star-forming clouds, taken mostly from the ``Cores to Disks (c2d)'' Legacy program. The average abundance of solid CO2 relative to water in low-mass protostellar envelopes is 0.32 +/- 0.02, significantly higher than that found in quiescent molecular clouds and in massive star forming regions. It is found that a decomposition of all the observed CO2 bending mode profiles requires a minimum of five unique components. Roughly 2/3 of the CO2 ice is found in a water-rich environment, while most of the remaining 1/3 is found in a CO environment. Ground-based observations of solid CO toward a large subset of the c2d sample are used to further constrain the CO2:CO component and suggest a model in which low-density clouds form the CO2:H2O component and higher density clouds form the CO2:CO ice during and after the freeze-out of gas-phase CO. It is suggested that the subsequent evolution of the CO2 and CO profiles toward low-mass protostars, in particular the appearance of the splitting of the CO2 bending mode due to pure, crystalline CO2, is first caused by distillation of the CO2:CO component through evaporation of CO due to thermal processing to ~20-30 K in the inner regions of infalling envelopes. The formation of pure CO2 via segregation from the H2O rich mantle may contribute to the band splitting at higher levels of thermal processing (>50 K), but is harder to reconcile with the physical structure of protostellar envelopes around low-luminosity objects.
Accepted for ApJ
References in corpus (3)
- c2d Spitzer IRS Spectra of Disks around T Tauri Stars. III. [Ne II], [Fe I], and H_2 gas-phase lines
- Spatial mapping of ices in the Oph-F core: A direct measurement of CO depletion and the formation of CO2
- Gas-grain chemistry in cold interstellar cloud cores with a microscopic Monte Carlo approach to surface chemistry
Cited by in corpus (72)
- An Ice Age JWST inventory of dense molecular cloud ices
- Astrochemistry and compositions of planetary systems
- Vacuum-UV spectroscopy of interstellar ice analogs. I. Absorption cross-sections of polar-ice molecules
- CORINOS I: JWST/MIRI Spectroscopy and Imaging of a Class 0 protostar IRAS 15398-3359
- MINDS. The detection of CO with JWST-MIRI indicates abundant CO in a protoplanetary disk
- Water vapor distribution in protoplanetary disks
- CO2 formation in quiescent clouds; an experimental study of the CO + OH pathway
- From stellar nebula to planetesimals
- CO diffusion into amorphous H2O ices
- Chemical tracers of episodic accretion in low-mass protostars
- Vacuum-UV spectroscopy of interstellar ice analogs. II. Absorption cross-sections of nonpolar ice molecules
- Disk Masses for Embedded Class I Protostars in the Taurus Molecular Cloud
- LIDA - The Leiden Ice Database for Astrochemistry
- AKARI Near Infrared Spectroscopy: Detection of H2O and CO2 Ices toward Young Stellar Objects in the Large Magellanic Cloud
- Interstellar Simulations Using A Unified Microscopic-Macroscopic Monte Carlo Model with a full Gas-Grain Network including Bulk Diffusion in Ice Mantles
- Thermophysical evolution of planetesimals in the Primordial Disk
- Lack of PAH emission toward low-mass embedded young stellar objects
- Survey of Ices toward Massive Young Stellar Objects: I. OCS, CO, OCN, and CHOH
- Laboratory and Computational Studies of Interstellar Ices
- Hunt for complex cyanides in protostellar ices with JWST: Tentative detection of CHCN and CHCN
- JWST observations of CO ice: Tracing the chemical environment and thermal history of ices in protostellar envelopes
- Transmission Electron Microscopy Study of the Morphology of Ices Composed of H2O, CO2, and CO on Refractory Grains
- Modelling the water and carbon dioxide production rates of Comet 67P/Churyumov-Gerasimenko
- Properties of protostars in the Elephant Trunk globule IC 1396A
- Infrared spectra of complex organic molecules in astronomically relevant ice mixtures. V. Methyl cyanide (acetonitrile)
- Kinetics and mechanisms of the acid-base reaction between NH and HCOOH in interstellar ice analogs
- Consistent dust and gas models for protoplanetary disks IV. A panchromatic view of protoplanetary disks
- JWST Observations of Young protoStars (JOYS). Overview of gaseous molecular emission and absorption in low-mass protostars
- CO Infrared Phonon Modes in Interstellar Ice Mixtures
- Linking ice and gas in the Serpens low-mass star-forming region
- Extension of HOPS Out to 500 ParSecs (eHOPS). I. Identification and Modeling of Protostars in the Aquila Molecular Clouds
- Diffusion and Clustering of Carbon Dioxide on non-porous Amorphous Solid Water
- Observations of the Onset of Complex Organic Molecule Formation in Interstellar Ices
- CO2-rich protoplanetary discs as a probe of dust radial drift & trapping
- CO diffusion and desorption kinetics in CO ices
- Vacuum ultraviolet photoabsorption spectroscopy of space-related ices: Formation and destruction of solid carbonic acid upon 1~keV electron irradiation
- Fitting infrared ice spectra with genetic modelling algorithms. Presenting the ENIIGMA fitting tool
- JOYS+ study of solid state C/C isotope ratios in protostellar envelopes: Observations of CO and CO ice with JWST
- The Formation of Uranus and Neptune: Fine Tuning in Core Accretion
- Extension of the HCOOH and CO2 solid-state reaction network during the CO freeze-out stage: inclusion of H2CO
- Mid-IR and VUV Spectroscopic Characterisation of Thermally Processed and Electron Irradiated CO2 Astrophysical Ice Analogues
- Search for methylamine in high mass hot cores
- Two dimensional ice mapping of molecular cores
- Characterization of thin film CO ice through the infrared combination mode
- On The Photodesorption of CO Ice Analogues: The Formation of Atomic C in The Ice and the Effect of The VUV Emission Spectrume
- Submillimeter Observations of the Young Low-Mass Object IRAS 04158+2805
- Methoxymethanol Formation Starting from CO-Hydrogenation
- High-Resolution Mid-Infrared Spectroscopy of GV Tau N: Surface Accretion and Detection of Ammonia in a Young Protoplanetary Disk
- Water ice: temperature-dependent refractive indexes and their astrophysical implications
- Ices in planet-forming disks: Self-consistent ice opacities in disk models
- The formation of CO through consumption of gas-phase CO on vacuum-UV irradiated water ice
- Molecular Mobility of Extraterrestrial Ices: Surface Diffusion in Astrochemistry and Planetary Science
- CO and CO ice mixtures with N in photon energy transfer studies
- HDO ice detected toward an isolated low-mass protostar with JWST
- CO2-driven surface changes in the Hapi region on Comet 67P/Churyumov-Gerasimenko
- Massive Young Stellar Objects in the Galactic Center. II. Seeing Through the Ice-rich Envelopes
- Exploring the chemistry induced by energetic processing of the H2-bearing, CO-rich apolar ice layer
- Ice features of low-luminosity protostars in near-infrared spectra of AKARI/IRC
- Collisional heating of icy planetesimals. I. Catastrophic collisions
- Discovery of two infrared objects with strong ice absorption in the AKARI slit-less spectroscopic survey of the Galactic Plane
- Ammonia, carbon dioxide and the non-detection of the 2152 cm CO band
- Linking ice and gas in the Coronet cluster in Corona Australis
- The Cosmic-Ray Induced Sputtering Process On Icy Grains
- AKARI near-infrared spectroscopy of the extended green object G318.05+0.09: Detection of CO fundamental ro-vibrational emission
- Tracking the evolutionary stage of protostars by the abundances of astrophysical ices
- Flux and fluence effects on the Vacuum-UV photodesorption and photoprocessing of CO ices
- JOYS: JWST MIRI/MRS spectra of the inner 500 au region of the L1527 IRS bipolar outflow
- Evidence of Accretion Burst: The Viscously Heated Inner Disk of the Embedded Protostar IRAS 16316-1540
- Carbon dioxide clathrate hydrate formation at low temperature. Diffusion-limited kinetics growth as monitored by FTIR
- Backlighting young stellar objects in the Central Molecular Zone: an ensemble-averaged abundance structure of methanol ices
- Detection of CO ice in the planetary nebula NGC 6302
- The star formation process in the Magellanic Clouds