Giant molecular filaments in the Milky Way II: The fourth Galactic quadrant
arXiv:1603.05617 · doi:10.1051/0004-6361/201527674
Abstract
Filamentary structures are common morphological features of the cold, molecular interstellar medium (ISM). Recent studies have discovered massive, hundred-parsec-scale filaments that may be connected to the large-scale, Galactic spiral arm structure. Addressing the nature of these Giant Molecular Filaments (GMFs) requires a census of their occurrence and properties. We perform a systematic search of GMFs in the fourth Galactic quadrant and determine their basic physical properties. We identify GMFs based on their dust extinction signatures in near- and mid-infrared and velocity structure probed by ^{13}CO line emission. We use the ^{13}CO line emission and ATLASGAL dust emission data to estimate the total and dense gas masses of the GMFs. We combine our sample with an earlier sample from literature and study the Galactic environment of the GMFs. We identify nine GMFs in the fourth Galactic quadrant; six are located in the Centaurus spiral arm and three in inter-arm regions. Combining this sample with an earlier study using the same identification criteria in the first Galactic quadrant results in 16 GMFs, nine of which are located within spiral arms. The GMFs have sizes of 80-160 pc and ^{13}CO-derived masses between 5-90 x 10^{4} Msun. Their dense gas mass fractions are between 1.5-37%, being higher in the GMFs connected to spiral arms. We also compare the different GMF-identification methods and find that emission and extinction based techniques overlap only partially, highlighting the need to use both to achieve a complete census.
Accepted for publication in A&A
References in corpus (8)
- The Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- The relation between gas and dust in the Taurus Molecular Cloud
- ATLASGAL --- towards a complete sample of massive star forming clumps
- Large-scale filaments associated with Milky Way spiral arms
- The Bones of the Milky Way
- Evolution of column density distributions within Orion~A
- ATLASGAL-selected massive clumps in the inner Galaxy: I. CO depletion and isotopic ratios
- GEMINI near-infrared spectroscopic observations of young massive stars embedded in molecular clouds
Cited by in corpus (44)
- SEDIGISM: Structure, excitation, and dynamics of the inner Galactic interstellar medium
- Dynamics of cluster-forming hub-filament systems: The case of the high-mass star-forming complex Monoceros R2
- The Cloud Factory I: Generating resolved filamentary molecular clouds from galactic-scale forces
- The Physical Properties of Large-Scale Galactic Filaments
- Resolving the fragmentation of high line-mass filaments with ALMA: the integral shaped filament in Orion A
- A Census of Large-Scale ( 10 pc), Velocity-Coherent, Dense Filaments in the Northern Galactic Plane: Automated Identification Using Minimum Spanning Tree
- Ubiquitous velocity fluctuations throughout the molecular interstellar medium
- Star-forming content of the giant molecular filaments in the Milky Way
- A guided map to the Spiral arms in the galactic disk of the Milky Way
- The evolution of Giant Molecular Filaments
- SEDIGISM: The kinematics of ATLASGAL filaments
- Cloud formation in the atomic and molecular phase: HI self absorption (HISA) towards a Giant Molecular Filament
- High-mass star formation at sub-50AU scales
- Structure and Fragmentation of a high line-mass filament: Nessie
- PHANGS--JWST First Results: ISM structure on the turbulent Jeans scale in four disk galaxies observed by JWST and ALMA
- On the fragmentation of filaments in a molecular cloud simulation
- Dense Gas in a Giant Molecular Filament
- Diverse Molecular Structures Across The Whole Star-Forming Disk of M83: High fidelity Imaging at 40pc Resolution
- The SEDIGISM survey: The influence of spiral arms on the molecular gas distribution of the inner Milky Way
- Simultaneous evidence of edge collapse and hub-filament configurations: A rare case study of a Giant Molecular Filament G45.3+0.1
- A multi-wavelength observation and investigation of six infrared dark clouds
- Kinematics of the molecular interstellar medium probed by Gaia: steep velocity dispersion-size relation, isotropic turbulence, and location-dependent energy dissipation
- Local Molecular Gas toward the Aquila Rift Region
- Synthetic Large-Scale Galactic Filaments -- on their Formation, Physical Properties, and Resemblance to Observations
- OGHReS: Large-scale filaments in the outer Galaxy
- Revealing a spiral-shaped molecular cloud in our galaxy - Cloud fragmentation under rotation and gravity
- Atomic and molecular gas properties during cloud formation
- A Kpc Scale Molecular Wave in the Inner Galaxy: Feather of the Milky Way?
- Large-scale Velocity-coherent Filaments in the SEDIGISM Survey: Association with Spiral Arms and Fraction of Dense Gas
- Probing the massive star forming environment - a multiwavelength investigation of the filamentary IRDC G333.73+0.37
- The "Maggie" filament: Physical properties of a giant atomic cloud
- The location, clustering, and propagation of massive star formation in giant molecular clouds
- Dynamical cooling of galactic discs by molecular cloud collisions -- Origin of giant clumps in gas-rich galaxy discs
- The discovery of the largest gas filament in our Galaxy, or a new spiral arm?
- Nobeyama 45 m Local Spur CO survey. I. Giant molecular filaments and cluster formation in the Vulpecula OB association
- A Herschel study of G214.5-1.8: a young, cold and quiescent giant molecular filament on the shell of a HI superbubble
- The Cassiopeia Filament: A Blown Spur of the Local Arm
- Dust extinction map of the Galactic plane based on the VVV survey data
- A Galactic Dust Devil: far-infrared observations of the Tornado Supernova Remnant candidate
- Appearance of Dusty Filaments at Different Viewing Angles
- Investigations of MWISP Filaments. I. Filament Identification and Analysis Algorithms, and Source Catalogue
- Spatial offsets between interstellar bone-like filaments, radio masers, and cold diffuse CO gas, in the Scutum spiral arm
- Anisotropy in the carbon monoxide (CO) line emission across the Milky Way's disk
- Loose threads: parsec-scale filamentation in the high Galactic latitude molecular clouds MBM 3 and MBM 16