Molecules with ALMA at Planet-forming Scales (MAPS). X. Studying deuteration at high angular resolution toward protoplanetary disks
Gianni Cataldi, Yoshihide Yamato, Yuri Aikawa, Jennifer B. Bergner,, Kenji Furuya, Viviana V. Guzm\'an, Jane Huang, Ryan A. Loomis, Chunhua Qi,, Sean M. Andrews, Edwin A. Bergin, Alice S. Booth, Arthur D. Bosman, L., Ilsedore Cleeves, Ian Czekala, John D. Ilee, Charles J. Law

TL;DR
This study uses high-resolution ALMA observations to analyze deuterium fractionation in five protoplanetary disks, revealing spatial variations and active deuteration channels that inform planet formation processes.
Contribution
It provides the first high-resolution spatial analysis of DCN/HCN and N₂D⁺/N₂H⁺ ratios in multiple disks, advancing understanding of deuteration during planet formation.
Findings
DCN detected in all five disks, with one new detection.
N₂D⁺ detected in four disks, including two new detections.
Inner disk regions show lower deuteration compared to outer regions.
Abstract
Deuterium fractionation is dependent on various physical and chemical parameters. Thus, the formation location and thermal history of material in the solar system is often studied by measuring its D/H ratio. This requires knowledge about the deuteration processes operating during the planet formation era. We aim to study these processes by radially resolving the DCN/HCN (at 0.3" resolution) and ND/NH (0.3 to 0.9") column density ratios toward the five protoplanetary disks observed by the Molecules with ALMA at Planet-forming scales (MAPS) Large Program. DCN is detected in all five sources, with one newly reported detection. ND is detected in four sources, two of which are newly reported detections. We derive column density profiles that allow us to study the spatial variation of the DCN/HCN and ND/NH ratios at high resolution. DCN/HCN varies…
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