Molecules with ALMA at Planet-forming Scales (MAPS XVIII): Kinematic Substructures in the Disks of HD 163296 and MWC 480
Richard Teague, Jaehan Bae, Yuri Aikawa, Sean M. Andrews, Edwin A., Bergin, Jennifer B. Bergner, Yann Boehler, Alice S. Booth, Arthur D. Bosman,, Gianni Cataldi, Ian Czekala, Viviana V. Guzm\'an, Jane Huang, John D. Ilee,, Charles J. Law, Romane Le Gal, Feng Long, Ryan A. Loomis

TL;DR
This study uses high-resolution ALMA observations of protoplanetary disks around HD 163296 and MWC 480 to identify kinematic substructures and potential embedded planets, advancing understanding of planet formation processes.
Contribution
It presents detailed analysis of velocity perturbations and temperature variations in disks, revealing signatures of giant planets and demonstrating the effectiveness of molecular line observations in detecting embedded planets.
Findings
Detection of velocity perturbations consistent with giant planets
Observation of localized temperature variations associated with substructures
Identification of spiral arms indicating planet-disk interactions
Abstract
We explore the dynamical structure of the protoplanetary disks surrounding HD 163296 and MWC 480 as part of the Molecules with ALMA at Planet Forming Scales (MAPS) large program. Using the transitions of CO, CO and CO imaged at spatial resolutions of and with a channel spacing of , we find perturbations from Keplerian rotation in the projected velocity fields of both disks ( of the local Keplerian velocity), suggestive of large-scale (10s of au in size), coherent flows. By accounting for the azimuthal dependence on the projection of the velocity field, the velocity fields were decomposed into azimuthally averaged orthogonal components, , and . Using the optically thick CO emission as a probe of the gas temperature, local variations of K ($\approx\! 5…
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