A Galactic-scale gas wave in the Solar Neighborhood
arXiv:2001.08748 · doi:10.1038/s41586-019-1874-z
Abstract
For the past 150 years, the prevailing view of the local Interstellar Medium (ISM) was based on a peculiarity known as the Gould's Belt, an expanding ring of young stars, gas, and dust, tilted about 20 to the Galactic plane. Still, the physical relation between local gas clouds has remained practically unknown because the distance accuracy to clouds is of the same order or larger than their sizes. With the advent of large photometric surveys and the Gaia satellite astrometric survey this situation has changed. Here we report the 3-D structure of all local cloud complexes. We find a narrow and coherent 2.7 kpc arrangement of dense gas in the Solar neighborhood that contains many of the clouds thought to be associated with the Gould Belt. This finding is inconsistent with the notion that these clouds are part of a ring, disputing the Gould Belt model. The new structure comprises the majority of nearby star-forming regions, has an aspect ratio of about 1:20, and contains about 3 million solar masses of gas. Remarkably, the new structure appears to be undulating and its 3-D distribution is well described by a damped sinusoidal wave on the plane of the Milky Way, with an average period of about 2 kpc and a maximum amplitude of about 160 pc. Our results represent a first step in the revision of the local gas distribution and Galactic structure and offer a new, broader context to studies on the transformation of molecular gas into stars.
Published in Nature on 7 January 2020. For data, interactive visualizations, and more information see: http://tinyurl.com/radwave (https://sites.google.com/cfa.harvard.edu/radcliffewave/)
References in corpus (9)
- Gaia-2MASS 3D maps of Galactic interstellar dust within 3 kpc
- 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 Large Catalog of Accurate Distances to Molecular Clouds from PS1 Photometry
- Hipparcos distances of Ophiuchus and Lupus cloud complexes
- The Bones of the Milky Way
- Characteristics of Spiral Arms in Late-type Galaxies
- Corrugations in the Disk of the Edge-On Spiral Galaxy IC2233
- OB Stars in the Solar Neighborhood I: Analysis of their Spatial Distribution
Cited by in corpus (94)
- Star formation near the Sun is driven by expansion of the Local Bubble
- Updated Gaia-2MASS 3D maps of Galactic interstellar dust
- A parsec-scale Galactic 3D dust map out to 1.25 kpc from the Sun
- Structural parameters of 389 local Open Clusters
- A tale of two DIGs: The relative role of HII regions and low-mass hot evolved stars in powering the diffuse ionised gas (DIG) in PHANGS-MUSE galaxies
- The SEDIGISM survey: first data release and overview of the Galactic structure
- On the duration of the embedded phase of star formation
- Gaia EDR3 Reveals the Substructure and Complicated Star Formation History of the Greater Taurus-Auriga Star Forming Complex
- On the Three-Dimensional Structure of Local Molecular Clouds
- The star formation history of Upper Scorpius and Ophiuchus
- 3D Morphology of Open Clusters in the Solar Neighborhood with Gaia EDR3 II: Hierarchical Star Formation Revealed by Spatial and Kinematic Substructures
- The Formation of a Stellar Association in the NGC 7000/IC 5070 Complex: Results from Kinematic Analysis of Stars and Gas
- LAMOST meets Gaia: The Galactic Open Clusters
- Low mass young stars in the Milky Way unveiled by DBSCAN and Gaia EDR3. Mapping the star forming regions within 1.5 Kpc
- A Scintillation Arc Survey of 22 Pulsars with Low to Moderate Dispersion Measures
- A high pitch angle structure in the Sagittarius Arm
- The Radcliffe Wave is Oscillating
- Dynamical Accretion Flows -- ALMAGAL: Flows along filamentary structures in high-mass star-forming clusters
- Galactic seismology: joint evolution of impact-triggered stellar and gaseous disc corrugations
- FEDReD II : 3D Extinction Map with 2MASS and Gaia DR2 data
- Observations of magnetic fields surrounding LkH 101 taken by the BISTRO survey with JCMT-POL-2
- Evidence of a vertical kinematic oscillation beyond the Radcliffe Wave
- Are massive dense clumps truly sub-virial? A new analysis using Gould Belt ammonia data
- Starlight-polarization-based tomography of the magnetized interstellar medium: PASIPHAE's line-of-sight inversion method
- Moving groups across Galactocentric radius with Gaia DR3
- Distances to molecular clouds in the second Galactic quadrant
- The first degree-scale starlight-polarization-based tomography map of the magnetized interstellar medium
- Most nearby young star clusters formed in three massive complexes
- Kinematics of the molecular interstellar medium probed by Gaia: steep velocity dispersion-size relation, isotropic turbulence, and location-dependent energy dissipation
- Wobbly discs -- corrugations seen in the dust lanes of edge-on galaxies
- Spatially Coherent 3D Distributions of HI and CO in the Milky Way
- A Unified Model for the Fan Region and the North Polar Spur: A bundle of filaments in the Local Galaxy
- Local Molecular Gas toward the Aquila Rift Region
- The Great Wave: Evidence of a large-scale vertical corrugation propagating outwards in the Galactic disc
- On the origin of the North Celestial Pole Loop
- Kinematic footprint of the Milky Way spiral arms in Gaia EDR3
- The coherent magnetic field of the Milky Way halo, Local Bubble and Fan Region
- Discovery of a coherent, wave-like velocity pattern for the Radcliffe Wave
- The three-dimensional structure of Galactic molecular cloud complexes out to 2.5 kpc
- Phase spirals in cosmological simulations of Milky Way-size galaxies
- Distances to nearby molecular clouds traced by young stars
- A Kpc Scale Molecular Wave in the Inner Galaxy: Feather of the Milky Way?
- The "Maggie" filament: Physical properties of a giant atomic cloud
- The Radcliffe Wave as the gas spine of the Orion Arm
- Parameters of the Radcliffe wave from masers, radio stars and T Tauri stars
- Investigating the amplitude and rotation of the phase spiral in the Milky Way outer disc
- Kinetic tomography of the Galactic plane within 1.25 kiloparsecs from the Sun. The interstellar flows revealed by HI and CO line emission and 3D dust
- The parallax and 3D kinematics of water masers in the massive star-forming region G034.43+0.24
- A large catalogue of molecular clouds in the southern sky
- The Stellar "Snake" I: Whole Structure and Properties
- Weather Forecast of the Milky Way: Shear and Stellar feedback determine the lives of Galactic-scale filaments
- Parallax-based Distances to Galactic Hii Regions: Nearby Spiral Structure
- Spectroscopic Confirmation of a Population of Isolated, Intermediate-Mass YSOs
- Faraday tomography of LoTSS-DR2 data: II. Multi-tracer analysis in the high-latitude outer Galaxy
- The Alma catalogue of OB stars. III. A cross-match with Gaia DR3 and an extension based on new spectral classifications
- Kinematics of the Milky Way from the Gaia EDR3 red giants and sub-giants
- Infall and Disk Processes - the Message from Meteorites
- Near-cancellation of up- and down-gradient momentum transport in forced magnetized shear-flow turbulence
- A GALAH View of the Chemical Homogeneity and Ages of Stellar Strings Identified in Gaia
- Parameters of the Galactic Spiral Density Wave from Masers with Parallax Errors Less Than 10%
- Characterizing the 3D Kinematics of Young Stars in the Radcliffe Wave
- TIC 43152097. The first eclipsing binary in NGC 2232
- Star Formation in Extreme Environments: A 200 pc High Velocity Gas Stream in the Galactic Centre
- Limitations and rotation of the two-armed phase spiral in the Milky Way stellar disc
- The "C": The large Chameleon-Musca-Coalsack cloud
- The Origin of the Cluster of Local Interstellar Clouds
- The Effect of Molecular Cloud Properties on the Kinematics of Stars Formed in the Trifid Region
- The Solar System's passage through the Radcliffe wave during the middle Miocene
- The Mysterious Radcliffe Wave
- Peculiarities of Open Star Clusters with High Vertical Velocities from the Region of the Sco-Cen OB Association
- The magnetic field of the Radcliffe Wave: starlight polarization at nearest approach to the Sun
- Topography of the Young Galactic Disk: Spatial and Kinematic Patterns of the Clustered Star Formation in the Solar Neighborhood
- The Radcliffe Wave as traced by young open clusters: Stellar parameters, activity indicators, and abundances of solar-type members of eight young clusters
- Elongated Gravity Sources as an Analytical Limit for Flat Galaxy Rotation Curves
- Rubin LSST observing strategies to maximize volume and uniformity coverage of Star Forming Regions in the Galactic Plane
- Measuring the Diffuse Interstellar Bands at 5780, 5797, and 6614 Å in Low-Resolution Spectra of Cool Stars from LAMOST
- Metal-rich stellar counterpart of the Radcliffe Wave and the 3D chemical footprints of the Milky Way spiral arms
- From theory to observation: understanding filamentary flows in high-mass star-forming clusters
- Hot subdwarf stars from the Hamburg Quasar Survey
- CU-JADE: A Method for Traversing Extinction Jumps along the Line of Sight
- The Radcliffe wave parameters from data on open star clusters
- A Wave-Corrected Assessment of the Local Midplane
- The superclouds of the local Milky Way
- Rethinking Habitability using Biogenic Precursors: Formaldehyde in Millimeter Molecular Clouds of the Inner Galaxy
- The late Miocene Be anomaly and the possibility of a supernova
- Kinematics of young stellar objects in NGC 2024 based on infrared proper motions
- Monoceros OB4: a new association in Gaia DR2
- Wrinkles in Time. II. Stellar Age Trends in Kinematic Signatures from Transient Spiral Structure
- Assessing membership projection errors in star forming regions
- CO Structures with Narrow Lines in Nearby Quiescent Regions
- Search for galactic structures and study of their kinematics in the Gaia era
- Place of the Radcliffe Wave in the Local System
- Bending Waves in Velocity Space: a First Look at the THINGS sample
- Phase space analysis of the young stellar component of the Radcliffe Wave