Filament L1482 in the California molecular cloud
arXiv:1405.7454 · doi:10.1051/0004-6361/201323122
Abstract
Aims. The process of gravitational fragmentation in the L1482 molecular filament of the California molecular cloud is studied by combining several complementary observations and physical estimates. We investigate the kinematic and dynamical states of this molecular filament and physical properties of several dozens of dense molecular clumps embedded therein. Methods. We present and compare molecular line emission observations of the J=2--1 and J=3--2 transitions of 12CO in this molecular complex, using the KOSMA 3-meter telescope. These observations are complemented with archival data observations and analyses of the 13CO J=1--0 emission obtained at the Purple Mountain Observatory 13.7-meter radio telescope at Delingha Station in QingHai Province of west China, as well as infrared emission maps from the Herschel Space Telescope online archive, obtained with the SPIRE and PACS cameras. Comparison of these complementary datasets allow for a comprehensive multi-wavelength analysis of the L1482 molecular filament. Results. We have identified 23 clumps along the molecular filament L1482 in the California molecular cloud. All these molecular clumps show supersonic non-thermal gas motions. While surprisingly similar in mass and size to the much better known Orion molecular cloud, the formation rate of high-mass stars appears to be suppressed in the California molecular cloud relative to that in the Orion molecular cloud based on the mass-radius threshold derived from the static Bonnor Ebert sphere. Our analysis suggests that these molecular filaments are thermally supercritical and molecular clumps may form by gravitational fragmentation along the filament. Instead of being static, these molecular clumps are most likely in processes of dynamic evolution.
10 pages, 9 figures, 2 tables, accepted to Astronomy and Astrophysics
References in corpus (18)
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- Filamentary structure of star-forming complexes
- Cluster-formation in the Rosette molecular cloud at the junctions of filaments
- What determines the density structure of molecular clouds ? A case study of Orion B with Herschel
- From the warm magnetized atomic medium to molecular clouds
- Formation and evolution of interstellar filaments; Hints from velocity dispersion measurements
- The Link between Magnetic Fields and Filamentary Clouds: Bimodal Cloud Orientations in the Gould Belt
- Massive Quiescent Cores in Orion: Dynamical State Revealed by High-Resolution Ammonia Maps
- A First Look at the Auriga-California Giant Molecular Cloud With Herschel and the CSO: Census of the Young Stellar Objects and the Dense Gas
- Massive molecular outflows associated with UCHII/HII regions
- 13CO Cores in Taurus Molecular Cloud
- Massive Quiescent Cores in Orion. -- II. Core Mass Function
- The infrared dust bubble N22: an expanding HII region and the star formation around it
- Self-Similar Shocks in Polytropic Gas Flows around Star-Forming Regions
- Earliest Stages of Protocluster Formation: Substructure and Kinematics of Starless Cores in Orion
- Starless Cloud Core L1517B in Envelope Expansion with Core Collapse
- Dispersal of Gaseous Circumstellar Discs around High-Mass Stars
- Filamentary Star Formation: Observing the Evolution toward Flattened Envelopes
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- Physical properties and chemical composition of the cores in the California molecular cloud
- Observations of magnetic fields surrounding LkH 101 taken by the BISTRO survey with JCMT-POL-2
- Filament rotation in the California L1482 cloud
- Studying magnetic fields and dust in M17 using polarized thermal dust emission observed by SOFIA/HAWC+
- Modelling the chemistry of star forming filaments - H and CO chemistry
- Modelling the chemistry of star-forming filaments - II. Testing filament characteristics with synthetic observations
- Extended ammonia observations towards the 'Integral-Shaped Filament'
- A wide-field CO survey towards the California Molecular Filament
- Physical Conditions and Kinematics of the Filamentary Structure in Orion Molecular Cloud 1
- Is the SNR HESS J1731-347 colliding with molecular clouds?
- Alignment and Rotational Disruption of Dust Grains in the Galactic Centre Revealed by Polarized Dust Emission
- First embedded cluster formation in California molecular cloud
- Parallel and Perpendicular Alignments of Velocity Gradient and Magnetic Field observed in the Molecular Clouds L1478 and L1482
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