The chemical history of molecules in circumstellar disks. II. Gas-phase species
arXiv:1109.1741 · doi:10.1051/0004-6361/201117249
Abstract
Context: The chemical composition of a molecular cloud changes dramatically as it collapses to form a low-mass protostar and circumstellar disk. Two-dimensional (2D) chemodynamical models are required to properly study this process. Aims: The goal of this work is to follow, for the first time, the chemical evolution in two dimensions all the way from a pre-stellar core into a circumstellar disk. Of special interest is the question whether the chemical composition of the disk is a result of chemical processing during the collapse phase, or whether it is determined by in situ processing after the disk has formed. Methods: Our model combines a semi-analytical method to get 2D axisymmetric density and velocity structures with detailed radiative transfer calculations to get temperature profiles and UV fluxes. Material is followed in from the core to the disk and a full gas-phase chemistry network -- including freeze-out onto and evaporation from cold dust grains -- is evolved along these trajectories. The abundances thus obtained are compared to the results from a static disk model and to observations of comets. Results: The chemistry during the collapse phase is dominated by a few key processes, such as the evaporation of CO or the photodissociation of H2O. At the end of the collapse phase, the disk can be divided into zones with different chemical histories. The disk is not in chemical equilibrium at the end of the collapse, so care must be taken when choosing the initial abundances for stand-alone disk chemistry models. Our model results imply that comets must be formed from material with different chemical histories: some of it is strongly processed, some of it remains pristine. Variations between individual comets are possible if they formed at different positions or different times in the solar nebula.
18 pages, 12 figures, accepted by A&A
References in corpus (14)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- 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
- Laboratory evidence for efficient water formation in interstellar ices
- Photoprocesses in protoplanetary disks
- Molecular Evolution and Star Formation: From Prestellar Cores to Protostellar Cores
- The chemical history of molecules in circumstellar disks. I. Ices
- Herschel Measurements of Molecular Oxygen in Orion
- Desorption of CO and O2 interstellar ice analogs
- Laboratory H2O:CO2 ice desorption data: entrapment dependencies and its parameterization with an extended three-phase model
- Gas-phase CO in protoplanetary disks: a challenge for turbulent mixing
- Chemical Modelling of Young Stellar Objects, I. Method and Benchmarks
- Modeling the chemical evolution of a collapsing prestellar core in two spatial dimensions
- Characterizing the velocity field in hydrodynamical simulations of low-mass star formation using spectral line profiles
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- Complex organic molecules in low-mass protostars on solar system scales -- I. Oxygen-bearing species
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- The ALMA-PILS survey: Stringent limits on small amines and nitrogen-oxides towards IRAS 16293-2422B
- The ALMA-PILS survey: First detection of nitrous acid (HONO) in the interstellar medium
- The composition of the protosolar disk and the formation conditions for comets
- Simulated Observations of Young Gravitationally Unstable Protoplanetary Discs
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- A protosolar nebula origin for the ices agglomerated by Comet 67P/Churyumov-Gerasimenko
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- The TW Hya Rosetta Stone Project II: Spatially resolved emission of formaldehyde hints at low-temperature gas-phase formation
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- JWST Observations of Young protoStars (JOYS). Overview of gaseous molecular emission and absorption in low-mass protostars
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- Early planet formation in embedded protostellar disks: Setting the stage for the first generation of planetesimals
- Chemistry in a forming protoplanetary disk: main accretion phase
- Importance of source structure on complex organics emission II. Can disks explain lack of methanol emission from some low-mass protostars?
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- The abundance of C18O and HDO in the envelope and hot core of the intermediate mass protostar NGC 7129 FIRS 2
- Chemical evolution during the formation of a protoplanetary disk
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- A JWST/MIRI analysis of the ice distribution and PAH emission in the protoplanetary disk HH 48 NE
- Environment and Protostellar Evolution
- The impact of pre-main sequence stellar evolution on midplane snowline locations and C/O in planet forming discs
- Astro & cosmo-chemical consequences of accretion bursts I: the D/H ratio of water
- Modeling chemistry during star formation: Water deuteration in dynamic star-forming regions
- FUV Irradiation and the Heat Signature of Accretion in Protoplanetary Disk Atmospheres
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- Signs of outflow feedback from a nearby young stellar object on the protostellar envelope around HL Tau
- Impact of an Active Sgr A* on the Synthesis of Water and Organic Molecules Throughout the Milky Way
- The role of OH in the chemical evolution of protoplanetary disks II. Gas-rich environments
- A Hydrochemical Hybrid Code for Astrophysical Problems. I. Code Verification and Benchmarks for Photon-Dominated Region (PDR)
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- Physicochemical models: source-tailored or generic?
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