The Role of Magnetic Fields in the Formation of the Filamentary Infrared Dark Cloud G11.11-0.12
arXiv:2207.03695 · doi:10.1093/mnras/stad2259
Abstract
We report on the near-infrared polarimetric observations of G11.11-0.12 (hereafter G11) obtained with SIRPOL on the 1.4 m IRSF telescope. The starlight polarisation of the background stars reveals the on-sky component of magnetic fields in G11, and these are consistent with the field orientation observed from polarised dust emission at m. The magnetic fields in G11 are perpendicular to the filament, and are independent of the filament's orientation relative to the Galactic plane. The field strength in the envelope of G11 is in the range G, derived from two methods. The analyses of the magnetic fields and gas velocity dispersion indicate that the envelope of G11 is supersonic but sub-Alfv{é}nic. The critical mass-to-flux ratio in the envelope of G11 is close to 1 and increases to on the spine of G11. The relative weights on the importance of magnetic fields, turbulence and gravity indicate that gravity dominates the dynamical state of G11, but with significant contribution from magnetic fields. The field strength, , increases slower than the gas density, , from the envelope to the spine of G11, characterized by . The observed strength and orientation of magnetic fields in G11 imply that supersonic and sub-Alfv{é}nic gas flow is channelled by the strong magnetic fields and is assembled into filaments perpendicular to the magnetic fields. The formation of low-mass stars is enhanced in the filaments with high column density, in agreement with the excess of low-mass protostars detected in the densest regions of G11.
accepted for publication in Monthly Notices of the Royal Astronomical Society Main Journal; 16 pages, 10 figures
References in corpus (45)
- Array Programming with NumPy
- The Gaia mission
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Radiative torques: Analytical Model and Basic Properties
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- Magnetic Fields in High-Mass Infrared Dark Clouds
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Magnetic Fields and Massive Star Formation
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- The ALMA Survey of 70 m dark High-mass clumps in Early Stages (ASHES). I. Pilot Survey: Clump Fragmentation
- The Milky Way Imaging Scroll Painting (MWISP): Project Details and Initial Results from the Galactic Longitude of 25.8deg to 49.7deg
- Magnetically Regulated Star Formation in 3D: The Case of Taurus Molecular Cloud Complex
- Magnetohydronamic Evolution of HII Regions in Molecular Clouds: Simulation Methodology, Tests, and Uniform Media
- Using Herschel and Planck observations to delineate the role of magnetic fields in molecular cloud structure
- Magnetized filamentary gas flows feeding the young embedded cluster in Serpens South
- Understanding star formation in molecular clouds II. Signatures of gravitational collapse of IRDCs
- High-accuracy estimation of magnetic field strength in the interstellar medium from dust polarization
- Dust polarized emission observations of NGC 6334; BISTRO reveals the details of the complex but organized magnetic field structure of the high-mass star-forming hub-filament network
- From parallel to perpendicular -- On the orientation of magnetic fields in molecular clouds
- The ALMA Survey of 70 Dark High-mass Clumps in Early Stages (ASHES). II: Molecular Outflows in the Extreme Early Stages of Protocluster Formation
- The JCMT BISTRO Survey: Magnetic Fields Associated with a Network of Filaments in NGC 1333
- Calibrating the Davis-Chandrasekhar-Fermi method with numerical simulations: uncertainties in estimating the magnetic field strength from statistics of field orientations
- Massive and low-mass protostars in massive "starless" cores
- Magnetized interstellar molecular clouds: II. The Large-Scale Structure and Dynamics of Filamentary Molecular Clouds
- Carbon in different phases ([CII], [CI], and CO) in infrared dark clouds: Cloud formation signatures and carbon gas fractions
- The Link between Magnetic Fields and Cloud/Star Formation
- Mapping the magnetic field in the Taurus/B211 filamentary cloud with SOFIA HAWC+ and comparing with simulation
- Magnetically Dominated Parallel Interstellar Filaments at the Infrared Dark Cloud G14.225-0.506
- Revealing the diverse magnetic field morphologies in Taurus dense cores with sensitive sub-millimeter polarimetry
- Gravity Versus Magnetic Fields in Forming Molecular Clouds
- Fragmentation and Kinematics of dense molecular cores in the filamentary infrared-dark cloud G011.11-0.12
- The relative orientation between the magnetic field and gradients of surface brightness within thin velocity slices of 12CO and 13CO emission from the Taurus molecular cloud
- The Galactic Plane Infrared Polarization Survey (GPIPS): Data Release 4
- Magnetic Field Orientation in Self-Gravitating Turbulent Molecular Clouds
- The ALMA Survey of 70m Dark High-mass Clumps in Early Stages (ASHES) III. A Young Molecular Outflow Driven by a Decelerating Jet
- HAWC+/SOFIA Polarimetry in L1688: Relative Orientation of Magnetic Field and Elongated Cloud Structure
- The relative orientation between the magnetic field and gas density structures in non-gravitating turbulent media
- Relative Alignment between Dense Molecular Cores and Ambient Magnetic Field: The Synergy of Numerical Models and Observations
- In search of infall motion in molecular clumps III: HCO+ (1-0) and H13CO+ (1-0) mapping observations toward the confirmed infall sources
- In Search for Infall Motion in molecular clumps II: HCO+ (1-0) and HCN (1-0) Observations toward a Sub-sample of Infall Candidates
- Weak and Compact Radio Emission in Early Massive Star Formation Regions: An Ionized Jet Toward G11.11-0.12P1
- The Role of Magnetic Fields in Triggered Star Formation of RCW 120
- Magnetic fields and Star Formation around HII regions: The S235 complex
- The physical conditions in IRDC clumps from Herschel HIFI observations of H2O