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Mapping Protoplanetary Disk Vertical Structure with CO Isotopologue Line Emission

Authors :
Charles J. Law
Richard Teague
Karin I. Öberg
Evan A. Rich
Sean M. Andrews
Jaehan Bae
Myriam Benisty
Stefano Facchini
Kevin Flaherty
Andrea Isella
Sheng Jin
Jun Hashimoto
Jane Huang
Ryan A. Loomis
Feng Long
Carlos E. Muñoz-Romero
Teresa Paneque-Carreño
Laura M. Pérez
Chunhua Qi
Kamber R. Schwarz
Jochen Stadler
Takashi Tsukagoshi
David J. Wilner
Gerrit van der Plas
Source :
The Astrophysical Journal. 948:60
Publication Year :
2023
Publisher :
American Astronomical Society, 2023.

Abstract

High spatial resolution observations of CO isotopologue line emission in protoplanetary disks at mid-inclinations (${\approx}$30-75{\deg}) allow us to characterize the gas structure in detail, including radial and vertical substructures, emission surface heights and their dependencies on source characteristics, and disk temperature profiles. By combining observations of a suite of CO isotopologues, we can map the 2D (r, z) disk structure from the disk upper atmosphere, as traced by CO, to near the midplane, as probed by less abundant isotopologues. Here, we present high angular resolution (${\lesssim}$0."1 to ${\approx}$0."2; ${\approx}$15-30 au) observations of CO, $^{13}$CO, and C$^{18}$O 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 $^{13}$CO for the DM Tau and LkCa 15 disks. With these observations, we do not resolve the vertical structure of C$^{18}$O in any disk, which is instead consistent with C$^{18}$O 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 $^{13}$CO 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.<br />Comment: 31 pages, 15 figures, accepted for publication in ApJ. Image cubes available at https://zenodo.org/record/7430257

Details

ISSN :
15384357 and 0004637X
Volume :
948
Database :
OpenAIRE
Journal :
The Astrophysical Journal
Accession number :
edsair.doi.dedup.....0830793828d2da99706fe718e5ab2d73