Characterizing the 3D Kinematics of Young Stars in the Radcliffe Wave
Alan J. Tu, Catherine Zucker, Joshua S. Speagle, Angus Beane, Alyssa, Goodman, Jo\~ao Alves, Jacqueline Faherty, and Andreas Burkert

TL;DR
This study investigates the 3D motions of young stars in the Radcliffe Wave, revealing wave-like oscillations in their vertical angles that suggest recent or transient formation processes affecting the gaseous structure.
Contribution
It provides the first detailed analysis of young star kinematics in the Radcliffe Wave using Gaia data, supporting models of recent or transient formation mechanisms.
Findings
Young stars show wave-like vertical oscillations.
Older stars do not exhibit similar oscillations.
Results favor recent or transient formation processes.
Abstract
We present an analysis of the kinematics of the Radcliffe Wave, a 2.7-kpc-long sinusoidal band of molecular clouds in the solar neighborhood recently detected via 3D dust mapping. With Gaia DR2 astrometry and spectroscopy, we analyze the 3D space velocities of young stars along the Radcliffe Wave in action-angle space, using the motion of the wave's newly born stars as a proxy for its gas motion. We find that the vertical angle of young stars -- corresponding to their orbital phase perpendicular to the Galactic plane -- varies significantly as a function of position along the structure, in a pattern potentially consistent with a wave-like oscillation. This kind of oscillation is not seen in a control sample of older stars from Gaia occupying the same volume, disfavouring formation channels caused by long-lived physical processes. We use a ``wavy midplane'' model to try to…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astrophysics and Star Formation Studies · Astro and Planetary Science
