exoALMA I. Science Goals, Project Design and Data Products
Abstract
Planet formation is a hugely dynamic process requiring the transport, concentration and assimilation of gas and dust to form the first planetesimals and cores. With access to extremely high spatial and spectral resolution observations at unprecedented sensitivities, it is now possible to probe the planet forming environment in detail. To this end, the exoALMA Large Program targeted fifteen large protoplanetary disks ranging between and in radius, and mapped the gas and dust distributions. CO J=3-2, CO J=3-2 and CS J=7-6 molecular emission was imaged at high angular () and spectral () resolution, achieving a surface brightness temperature sensitivity of ~K over a single channel, while the 330~GHz continuum emission was imaged at 90~mas resolution and achieved a point source sensitivity of . These observations constitute some of the deepest observations of protoplanetary disks to date. Extensive substructure was found in all but one disk, traced by both dust continuum and molecular line emission. In addition, the molecular emission allowed for the velocity structure of the disks to be mapped with excellent precision (uncertainties on the order of ), revealing a variety of kinematic perturbations across all sources. From this sample it is clear that, when observed in detail, all disks appear to exhibit physical and dynamical substructure indicative of on-going dynamical processing due to young, embedded planets, large-scale, (magneto-)hydrodynamical instabilities or winds.
Keywords
Cite
@article{arxiv.2504.18688,
title = {exoALMA I. Science Goals, Project Design and Data Products},
author = {Richard Teague and Myriam Benisty and Stefano Facchini and Misato Fukagawa and Christophe Pinte and Sean M. Andrews and Jaehan Bae and Marcelo Barraza-Alfaro and Gianni Cataldi and Nicolás Cuello and Pietro Curone and Ian Czekala and Daniele Fasano and Mario Flock and Maria Galloway-Sprietsma and Charles H. Gardner and Himanshi Garg and Cassandra Hall and Iain Hammond and Thomas Hilder and Jane Huang and John D. Ilee and Andrea Isella and Andrés F. Izquierdo and Kazuhiro Kanagawa and Geoffroy Lesur and Giuseppe Lodato and Cristiano Longarini and Ryan A. Loomis and Frédéric Masset and Francois Menard and Ryuta Orihara and Daniel J. Price and Giovanni Rosotti and Jochen Stadler and Leonardo Testi and Hsi-Wei Yen and Gaylor Wafflard-Fernandez and David J. Wilner and Andrew J. Winter and Lisa Wölfer and Tomohiro C. Yoshida and Brianna Zawadzki},
journal= {arXiv preprint arXiv:2504.18688},
year = {2025}
}
Comments
This paper is part of the exoALMA Focus Issue of The Astrophysical Journal Letters