A new method for direct measurement of isotopologue ratios in protoplanetary disks: a case study of the CO/CO ratio in the TW Hya disk
arXiv:2204.08330 · doi:10.3847/1538-4357/ac6efb
Abstract
Planetary systems are thought to be born in protoplanetary disks. Isotope ratios are a powerful tool for investigating the material origin and evolution from molecular clouds to planetary systems via protoplanetary disks. However, it is challenging to measure the isotope (isotopologue) ratios, especially in protoplanetary disks, because the emission lines of major species are saturated. We developed a new method to overcome these challenges by using optically thin line wings induced by thermal broadening. As a first application of the method, we analyzed two carbon monoxide isotopologue lines, CO and CO , from archival observations of a protoplanetary disk around TW Hya with the Atacama Large Millimeter/sub-millimeter Array. The CO/CO ratio was estimated to be at disk radii of au, which is significantly smaller than the value observed in the local interstellar medium, . It implies that an isotope exchange reaction occurs in a low-temperature environment with . In contrast, it is suggested that CO/CO is higher than in the outer disk ( au), which can be explained by the difference in the binding energy of the isotopologues on dust grains and the CO gas depletion processes. Our results imply that the gas-phase CO/CO can vary by a factor of even inside a protoplanetary disk, and therefore, can be used to trace material evolution in disks.
17 pages, 13 figures, accepted for publication in ApJ
References in corpus (23)
- The Gaia mission
- The chemical make-up of the Sun: A 2020 vision
- Particle Stirring in Turbulent Gas Disks: Including Orbital Oscillations
- Towards Chemical Constraints on Hot Jupiter Migration
- Three radial gaps in the disk of TW Hydrae imaged with SPHERE
- Hydrocarbon emission rings in protoplanetary disks induced by dust evolution
- A solar C/O and sub-solar metallicity in a hot Jupiter atmosphere
- CO and dust properties in the TW Hya disk from high-resolution ALMA observations
- Mass inventory of the giant-planet formation zone in a solar nebula analog
- CO Depletion in Protoplanetary Disks: A Unified Picture Combining Physical Sequestration and Chemical Processing
- The 13O-rich atmosphere of a young accreting super-Jupiter
- A survey of C2H, HCN, and C18O in protoplanetary disks
- An ALMA survey of DCN/HCN and DCO/HCO in protoplanetary disks
- Molecules with ALMA at Planet-forming Scales (MAPS). VII. Sub-stellar O/H and C/H and super-stellar C/O in planet feeding gas
- High-precision C17O, C18O and C16O measurements in young stellar objects: analogues for CO self-shielding in the early solar system
- Spiral Structure in the Gas Disk of TW Hya
- Stacking Spectra in Protoplanetary Disks: Detecting Intensity Profiles from Hidden Molecular Lines in HD 163296
- The TW Hya Rosetta Stone Project III: Resolving the Gaseous Thermal Profile of the Disk
- The 12CO/13CO isotopologue ratio of a young, isolated brown dwarf. Possibly distinct formation pathways of super-Jupiters and brown dwarfs
- Multiple nitrogen reservoirs in a protoplanetary disk at the epoch of comet and giant planet formation
- High Spatial Resolution Observations of Molecular Lines towards the Protoplanetary Disk around TW Hya with ALMA
- Discovery of Molecular Line Polarization in the Disk of TW Hya
- Modeling Nitrogen Fractionation in the Protoplanetary Disk around TW Hya: Model Constraints on Grain Population and Carbon-to-Oxygen Elemental Abundance Ratio
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- The ESO SupJup Survey III: Confirmation of 13CO in YSES 1 b and Atmospheric Detection of YSES 1 c with CRIRES+
- JOYS+ study of solid state C/C isotope ratios in protostellar envelopes: Observations of CO and CO ice with JWST
- The ESO SupJup Survey IV. Unveiling the carbon isotope ratio of GQ Lup B and its host star
- exoALMA XV: Interpreting the height of CO emission layer
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- PRODIGE - envelope to disk with NOEMA: V. Low 12C/13C ratios for CH3OH and CH3CN in hot corinos
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- Resolved Gas Temperatures and 12C/13C ratios in SVS13A from ALMA Observations of CH3CN and CH3-13-CN
- Multiple Rings and Asymmetric Structures in the Disk of SR 21
- Radial variations in nitrogen, carbon, and hydrogen fractionation in the PDS 70 planet-hosting disk
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) VII: Optically thick gas with broad CO gaussian local line profiles in the HD 121617 disc
- Can Isotopologues Be Used as Biosignature Gases in Exoplanet Atmospheres?
- Protoplanetary Disk Chemistry