paper

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

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