Tracing Molecular Stratification within an Edge-on Protoplanetary Disk
D. Ru\'iz-Rodr\'iguez, J. H. Kastner, P. Hily-Blant, T. Forveille

TL;DR
This study uses high-resolution ALMA data to map the vertical and radial distribution of molecular emissions in an edge-on protoplanetary disk, revealing how different molecules trace various physical conditions and layers within the disk.
Contribution
It provides the first detailed analysis of the vertical stratification of CN, CO, and CS emissions in an edge-on disk, linking molecular emission regions to physical conditions and irradiation effects.
Findings
CN emission arises from intermediate disk layers at >100 au and closer to the midplane inside 100 au.
Different molecules trace layers of increasing density and decreasing temperature.
CN is thermalized near the midplane but sub-thermally excited in higher layers.
Abstract
High-resolution observations of edge-on proto-planetary disks in emission from molecular species sampling different critical densities and formation pathways offer the opportunity to trace the vertical chemical and physical structures of protoplanetary disks. Based on analysis of sub-arcsecond resolution Atacama Large Millimeter Array (ALMA) archival data for the edge-on Flying Saucer disk (2MASS J16281370-2431391), we establish the vertical and radial differentiation of the disk CN emitting regions with respect to those of CO and CS, and we model the disk physical conditions from which the CN emission arises. We demonstrate that the disk CO (2-1), CN (2-1), and CS J=5-4 emitting regions decrease in scale height above the midplane, such that 12CO, CN, and CS trace layers of increasing density and decreasing temperature. We find that at radii > 100 au from the central star,…
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