Mapping Protoplanetary Disk Vertical Structure with CO Isotopologue Line Emission

Author:

Law Charles J.ORCID,Teague RichardORCID,Öberg Karin I.ORCID,Rich Evan A.ORCID,Andrews Sean M.ORCID,Bae JaehanORCID,Benisty MyriamORCID,Facchini StefanoORCID,Flaherty KevinORCID,Isella AndreaORCID,Jin ShengORCID,Hashimoto JunORCID,Huang JaneORCID,Loomis Ryan A.ORCID,Long FengORCID,Muñoz-Romero Carlos E.ORCID,Paneque-Carreño TeresaORCID,Pérez Laura M.ORCID,Qi ChunhuaORCID,Schwarz Kamber R.ORCID,Stadler JochenORCID,Tsukagoshi TakashiORCID,Wilner David J.ORCID,van der Plas GerritORCID

Abstract

Abstract High-spatial-resolution observations of CO isotopologue line emission in protoplanetary disks at mid-inclinations (≈30°–75°) allow us to characterize the gas structure in detail, including radial and vertical substructures, emission surface heights and their dependencies on source characteristics, and disk temperature profiles. By combining observations of a suite of CO isotopologues, we can map the two-dimensional (r, z) disk structure from the disk upper atmosphere, as traced by CO, to near the midplane, as probed by less abundant isotopologues. Here, we present high-angular-resolution (≲0.″1 to ≈0.″2; ≈15–30 au) observations of CO, 13CO, and C18O in either or both J = 2–1 and J = 3–2 lines in the transition disks around DM Tau, Sz 91, LkCa 15, and HD 34282. We derived line emission surfaces in CO for all disks and in 13CO for the DM Tau and LkCa 15 disks. With these observations, we do not resolve the vertical structure of C18O in any disk, which is instead consistent with C18O emission originating from the midplane. Both the J = 2–1 and J = 3–2 lines show similar heights. Using the derived emission surfaces, we computed radial and vertical gas temperature distributions for each disk, including empirical temperature models for the DM Tau and LkCa 15 disks. After combining our sample with literature sources, we find that 13CO line emitting heights are also tentatively linked with source characteristics, e.g., stellar host mass, gas temperature, disk size, and show steeper trends than seen in CO emission surfaces.

Funder

National Science Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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