A 500 pc filamentary gas wisp in the disk of the Milky Way
arXiv:1310.3267 · doi:10.1051/0004-6361/201322411
Abstract
Star formation occurs in molecular gas. In previous studies, the structure of the molecular gas has been studied in terms of molecular clouds, but has been overlooked beyond the cloud scale. We present an observational study of the molecular gas at 49.5 degree <l<52.5 degree and -5.0 km/s <v_lsr <17.4 km/s. The molecular gas is found in the form of a huge (>= 500 pc) filamentary gas wisp. This has a large physical extent and a velocity dispersion of ~5 km/s. The eastern part of the filamentary gas wisp is located ~130 pc above the Galactic disk (which corresponds to 1.5-4 e-folding scale-heights), and the total mass of the gas wisp is >= 1 X 10^5 M_sun. It is composed of two molecular clouds and an expanding bubble. The velocity structure of the gas wisp can be explained as a smooth quiescent component disturbed by the expansion of a bubble. That the length of the gas wisp exceeds by much the thickness of the molecular disk of the Milky Way is consistent with the cloud-formation scenario in which the gas is cold prior to the formation of molecular clouds. Star formation in the filamentary gas wisp occurs at the edge of a bubble (G52L nebula), which is consistent with some models of triggered star formation.
Accepted for publication in A&A
References in corpus (17)
- The Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- The VLA Galactic Plane Survey
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- Star Formation in Disk Galaxies. I. Formation and Evolution of Giant Molecular Clouds via Gravitational Instability and Cloud Collisions
- Kinematic Distances to Molecular Clouds identified in the Galactic Ring Survey
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Resolution of the Distance Ambiguity for Galactic HII Regions
- The Exciting Lives of Giant Molecular Clouds
- Formation of Turbulent and Magnetized Molecular Clouds via Accretion Flows of HI Clouds
- Rapid Molecular Cloud and Star Formation: Mechanisms and Movies
- The formation of molecular clouds in spiral galaxies
- Spurs and feathering in spiral galaxies
- Molecular clouds and clumps in the Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- Giant Molecular clouds: what are they made from, and how do they get there?
- The Arecibo HII Region Discovery Survey
- Kiloparsec-Scale Simulations of Star Formation in Disk Galaxies. I. The unmagnetized and zero-feedback limit
- Feathering Instability of Spiral Arms. I: Formulation of the Problem
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- ATLASGAL -- A Galaxy-wide sample of dense filamentary structures
- The Skeleton of the Milky Way
- The Hi-GAL catalogue of dusty filamentary structures in the Galactic Plane
- The ATLASGAL survey: distribution of cold dust in the Galactic plane. Combination with Planck data
- A Census of Large-Scale ( 10 pc), Velocity-Coherent, Dense Filaments in the Northern Galactic Plane: Automated Identification Using Minimum Spanning Tree
- Giant molecular filaments in the Milky Way II: The fourth Galactic quadrant
- A large catalogue of molecular clouds with accurate distances within 4 kpc of the Galactic disk
- Star-forming content of the giant molecular filaments in the Milky Way
- The Interstellar Medium and star formation on kpc size scales
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- A Morphological Classification of 18190 Molecular Clouds Identified in CO Data from the MWISP Survey
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- The Dense Filamentary Giant Molecular Cloud G23.0-0.4: Birthplace of Ongoing Massive Star Formation
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- N131: A dust bubble born from the disruption of a gas filament
- The Molecular Structures of Local Arm and Perseus Arm in the Galactic Region of l=[139.75,149.75], b=[-5.25,5.25]
- Simultaneous evidence of edge collapse and hub-filament configurations: A rare case study of a Giant Molecular Filament G45.3+0.1
- Kinematics of the molecular interstellar medium probed by Gaia: steep velocity dispersion-size relation, isotropic turbulence, and location-dependent energy dissipation
- A multi-wavelength observation and investigation of six infrared dark clouds
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- Synthetic Large-Scale Galactic Filaments -- on their Formation, Physical Properties, and Resemblance to Observations
- Discovery of a coherent, wave-like velocity pattern for the Radcliffe Wave
- Revealing a spiral-shaped molecular cloud in our galaxy - Cloud fragmentation under rotation and gravity
- Large-scale Velocity-coherent Filaments in the SEDIGISM Survey: Association with Spiral Arms and Fraction of Dense Gas
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- Dynamical cooling of galactic discs by molecular cloud collisions -- Origin of giant clumps in gas-rich galaxy discs
- Weather Forecast of the Milky Way: Shear and Stellar feedback determine the lives of Galactic-scale filaments
- Nobeyama 45 m Local Spur CO survey. I. Giant molecular filaments and cluster formation in the Vulpecula OB association
- The Cassiopeia Filament: A Blown Spur of the Local Arm
- The Solar System's passage through the Radcliffe wave during the middle Miocene
- On the Spatial Distribution of CO Structures within CO Molecular Clouds
- A Comprehensive All-Sky Catalog of 3345 Molecular Clouds from Three-dimensional Dust Extinction
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- The Impact of Expanding HII Regions on Filament G37:Curved Magnetic Field and Multiple Direction Material Flows
- Quantifying the anisotropic density structure of the Central Molecular Zone -- a 2D correlation function approach