Characterizing the 3D Kinematics of Young Stars in the Radcliffe Wave
arXiv:2208.06469 · doi:10.3847/1538-4357/ac82f0
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 account for the trend in vertical angles seen in young stars, and find that while the best-fit parameters for the wave's spatial period and amplitude are qualitatively consistent with the existing morphology defined by 3D dust, there is no evidence for additional velocity structure. These results support more recent and/or transitory processes in the formation of the Radcliffe Wave, which would primarily affect the motion of the wave's gaseous material. Comparisons of our results with new and upcoming simulations, in conjunction with new stellar radial velocity measurements in Gaia DR3, should allow us to further discriminate between various competing hypotheses.
Accepted for publication in ApJ
References in corpus (16)
- galpy: A Python Library for Galactic Dynamics
- Trigonometric Parallaxes Of High-Mass Star Forming Regions: Our View Of The Milky Way
- A Large Catalog of Accurate Distances to Local Molecular Clouds: The Gaia DR2 Edition
- A Compendium of Distances to Molecular Clouds in the Star Formation Handbook
- A Galactic-scale gas wave in the Solar Neighborhood
- Bending and Breathing Modes of the Galactic Disk
- Galactic seismology: the evolving "phase spiral" after the Sagittarius dwarf impact
- IN-SYNC II: Virial Stars from Sub-Virial Cores -- The Velocity Dispersion of Embedded Pre-Main-Sequence Stars in NGC 1333
- The Alma catalog of OB stars. II. A cross-match with Gaia DR2 and an updated map of the solar neighbourhood
- 3D dynamics of the Orion cloud complex -- Discovery of coherent radial gas motions at the 100-pc scale
- The Clouds are breaking: tracing the Magellanic system with Gaia DR1 Mira variables
- Corrugations in the Disk of the Edge-On Spiral Galaxy IC2233
- Did Sgr cause the vertical waves in the solar neighbourhood?
- Evidence of a vertical kinematic oscillation beyond the Radcliffe Wave
- A minimum-hypothesis explanation for the Radcliffe Wave: Kelvin-Helmholtz instability
- Wobbly discs -- corrugations seen in the dust lanes of edge-on galaxies
Cited by in corpus (5)
- The Radcliffe Wave is Oscillating
- The Radcliffe Wave as traced by young open clusters: Stellar parameters, activity indicators, and abundances of solar-type members of eight young clusters
- The magnetic field of the Radcliffe Wave: starlight polarization at nearest approach to the Sun
- A High-Mass Young Star-forming Core Escaping from Its Parental Filament
- The Radcliffe wave parameters from data on open star clusters