Dust Substructures and Line Perturbations driven by a Forming Planet in J16120
Abstract
Abstract Hints of planet formation have been independently reported within the gap of the disc around 2MASS J16120668-301027 from millimetre continuum, infrared, and Hα observations. In this work, we present new evidence for ongoing planet formation based on Atacama Large Millimeter/submillimeter Array (ALMA) Band 7 observations, detecting 0.87 mm dust continuum emission together with 12CO (J=3-2) and 13CO (J=3-2) line emission. Visibility modelling of the continuum data reveals an inner disc and two dust rings peaking at 23 and 75 au. The continuum morphology is better reproduced by an eccentric disc model (e ~ 0.1) than by an axisymmetric disc. We further investigate the gas kinematics through modelling of the 12CO channel maps. The residual line-width map shows a localised increase in velocity dispersion at the position of a previously reported circumplanetary disc candidate (deprojected radius ~32 au, position angle ~170○) and along its orbit. This signal is spatially coincident with kink-like features and a transition from sub-Keplerian to super-Keplerian velocities. In addition, the velocity residual map exhibits an arc-like structure extending outward from the planet candidate, while the gas kinematics-despite substantial uncertainties-is consistent with inflow towards the candidate’s orbital radius. The observed increase in velocity dispersion agrees with predictions from planet-disc interaction simulations, which produce enhanced turbulence both at the planet location and along its orbital path. Taken together, the continuum morphology and gas kinematic signatures provide compelling new evidence for ongoing planet formation within the disc gap.
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Authors: Anibal Sierra, Andrés F. Izquierdo, Paola Pinilla, Kan Chen, Myriam Benisty, Laura Perez, Teresa Paneque-Carreño, Carolina Agurto-Gangas, Jaehan Bae, John Carpenter, Luca Cieza, Dingshan Deng, Stefano Facchini, Camilo González-Ruilova, Nicolas Kurtovic, Aleksandra Kuznetsova, Carlo F. Manara, James Miley, Álvaro Ribas, Giovanni Rosotti, Miguel Vioque
Institutions: Universidad Nacional Autónoma de México, University of Florida, Peking University, University of Michigan, University College London, University of Connecticut, University of Cambridge, Universidad Autónoma de la Ciudad de México, Queen Mary University of London, University of Milan, Planetary Science Institute, Millennium Science Initiative, Universidad de Santiago de Chile, Max Planck Institute for Extraterrestrial Physics, Federico Santa María Technical University, Max Planck Institute for Astronomy, European Southern Observatory, Universidad Diego Portales, Flatiron Health (United States), Institute of Astronomy, Astronomy and Space, Istituto Nazionale di Fisica Nucleare, Sezione di Milano, European Southern Observatory, Kavli Institute for Theoretical Sciences, Chinese Academy of Science South America Center for Astronomy, Atacama Large Millimeter Submillimeter Array