Evidence for the gravity-driven and magnetically-regularized gas flows feeding the massive protostellar cluster in Cepheus A
arXiv:2501.10280 · doi:10.1126/sciadv.ady2189
Abstract
The hierarchical interplay among gravity, magnetic fields, and turbulence in forming massive protostellar clusters remains elusive. We present high-resolution (14 arcsec 0.05 pc) 850 m dust polarization and CO line observations of Cepheus A using JCMT SCUBA-2/POL-2 and HARP. Our analysis reveals aligned gravitational (G), magnetic (B), and velocity fields (K), with an energy hierarchy of > > . Gravity, as the primary driver, induces gas flows and drags in B-field lines. Magnetic tension, as a secondary force, regulates turbulence, enabling ordered flows with an accretion rate of 2.1 0.4 10 M yr. This challenges the conventional view of B-fields resisting collapse in the clump/hub scale, instead showing cooperation with gravity. The 0.6 pc clump-scale B-field (with mean PA 45°) aligns coherently with fields at cloud (5 pc), core (0.05 pc), and disk (2000 AU) scales, offering new insights into the role of magnetic fields in multiscale star formation dynamics.
42 pages, 6 figures in the main text and 5 figures in the supplementary material, Published in Science Advances
References in corpus (63)
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Structural Analysis of Molecular Clouds: Dendrograms
- Evolution of Massive Protostars with High Accretion Rates
- Planck intermediate results. XXXV. Probing the role of the magnetic field in the formation of structure in molecular clouds
- How to Calculate Molecular Column Density
- Magnetic Fields in the Formation of Sun-Like Stars
- SCUBA-2: on-sky calibration using submillimetre standard sources
- Planck 2015 results. VIII. High Frequency Instrument data processing: Calibration and maps
- HARP/ACSIS: A submillimetre spectral imaging system on the James Clerk Maxwell Telescope
- The Milky Way Imaging Scroll Painting (MWISP): Project Details and Initial Results from the Galactic Longitude of 25.8deg to 49.7deg
- A disk of dust and molecular gas around a high-mass protostar
- Planck 2018 results. XII. Galactic astrophysics using polarized dust emission
- Unifying low and high mass star formation through density amplified hubs of filaments
- A protostellar system fed by a streamer of 10,500 au length
- Formation of Turbulent and Magnetized Molecular Clouds via Accretion Flows of HI Clouds
- Molecular Cloud Evolution IV: Magnetic Fields, Ambipolar Diffusion, and the Star Formation Efficiency
- The JCMT BISTRO Survey: The magnetic field strength in the Orion A filament
- Two-Fluid MHD Simulations of Converging HI Flows in the Interstellar Medium. I: Methodology and Basic Results
- The Magnetic Field Morphology of the Class 0 Protostar L1157-mm
- First results from the Herschel Gould Belt Survey in Taurus
- On the relation between the column density structures and the magnetic field orientation in the Vela C molecular complex
- Two-Fluid MHD Simulations of Converging Hi Flows in the Interstellar Medium. II: Are Molecular Clouds Generated Directly from Warm Neutral Medium?
- Gravity Driven Magnetic Field at ~1000 au Scales in High-mass Star Formation
- The Role of Magnetic Fields in Protostellar Outflows and Star Formation
- Effects of Magnetic Field Strength and Orientation on Molecular Cloud Formation
- Fragmentation of Shocked Flows: Gravity, Turbulence and Cooling
- The Magnetic Field in the Star-forming Region Cepheus A from Water Maser Polarization Observations
- Magnetized filamentary gas flows feeding the young embedded cluster in Serpens South
- High-accuracy estimation of magnetic field strength in the interstellar medium from dust polarization
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- XI. From inflow to infall in hub-filament systems
- 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
- Magnetic fields in massive star forming regions
- Magnetic Field Strength Maps for Molecular Clouds: A New Method Based on a Polarization - Intensity Gradient Relation
- Submillimeter Array Observations of Magnetic Fields in G240.31+0.07: an Hourglass in a Massive Cluster-forming Core
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- XV. Steady Accretion from Global Collapse to Core Feeding in Massive Hub-filament System SDC335
- Highly Ordered and Pinched Magnetic Fields in the Class 0 Proto-Binary System L1448 IRS 2
- A Pulsed, Precessing Jet in Cepheus A
- JCMT BISTRO survey: Magnetic Fields within the Hub-Filament Structure in IC 5146
- VLBA determination of the distance to nearby star-forming regions VI. The distance to the young stellar object HW 9 in Cepheus A
- JCMT POL-2 and BISTRO Survey observations of magnetic fields in the L1689 molecular cloud
- Polarization Properties and Magnetic Field Structures in the High-Mass Star-Forming Region W51 Observed with ALMA
- Formation of the Hub-Filament System G33.92+0.11: Local Interplay between Gravity, Velocity, and Magnetic Field
- Spitzer-IRAC GLIMPSE of high mass protostellar objects II - SED modelling of a bonafide sample
- Accretion Flows or Outflow Cavities? Uncovering the Gas Dynamics around Lupus 3-MMS
- Automated reduction of submillimetre single-dish heterodyne data from the James Clerk Maxwell Telescope using ORAC-DR
- Near-Infrared Imaging Polarimetry of the Serpens Cloud Core: Magnetic Field Structure, Outflows, and Inflows in A Cluster Forming Clump
- Planar infall of CH3OH gas around Cepheus A HW2
- The JCMT BISTRO Survey: The Distribution of Magnetic Field Strengths towards the OMC-1 Region
- B-fields in Star-Forming Region Observations (BISTRO): Magnetic Fields in the Filamentary Structures of Serpens Main
- Magnetic field properties in star formation: a review of their analysis methods and interpretation
- Quantifying the Significance of the Magnetic Field from Large-Scale Cloud to Collapsing Core: Self-Similarity, Mass-to-Flux Ratio and Star Formation Efficiency
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions-IX. A pilot study towards IRDC G034.43+00.24 on multi-scale structures and gas kinematics
- ALMA observations reveal no preferred outflow--filament and outflow--magnetic field orientations
- High-resolution study of a star-forming cluster in the Cep-A HW2 region
- Gravity and rotation drag the magnetic field in high-mass star formation
- Modeling disks and magnetic outflows around a forming massive star: I. Investigating the two layer-structure of the accretion disk
- Accretion and Diffusion Timescales in Sheets and Filaments
- The Explosion in Orion-KL as Seen by Mosaicking the Magnetic Field with ALMA
- The role of magnetic fields in the formation of multiple massive stars
- Evolution of the Hub-filament Structures in IC 5146 in the Context of the Energy Balance of Gravity, Turbulence, and Magnetic Field
- A Census of Protostellar Outflows in Nearby Molecular Clouds
- The kinetic and magnetic energy budget of hub-filament systems during the gravitational fragmentation of molecular clouds
- On deriving flux freezing in magnetohydrodynamics by direct differentiation