A multi-scale view of the magnetic field morphology in the hot molecular core G31.41+0.31
arXiv:2504.06701 · doi:10.1051/0004-6361/202453510
Abstract
Multiscale studies of the morphology and strength of the magnetic field are crucial to properly unveil its role and relative importance in high-mass star and cluster formation. G31.41+0.31 (G31) is a hub-filament system that hosts a high-mass protocluster embedded in a hot molecular core (HMC). G31 is one of the few sources showing a clear hourglass morphology of the magnetic field on scales between 1000 au and a few 100 au in previous interferometric observations. This strongly suggests a field-regulated collapse. To complete the study of the magnetic field properties in this high-mass star-forming region, we carried out observations with the James Clerk Maxwell Telescope m of the polarized dust emission. These observations had a spatial resolution of 0.2 pc at 3.75 kpc. The aim was to study the magnetic field in the whole cloud and to compare the magnetic field orientation toward the HMC from 50,000 au to 260 au scales. The large-scale (5 pc) orientation of the magnetic field toward the position of the HMC is consistent with that observed at the core (4,000 au) and circumstellar (260 au) scales. The self-similarity of the magnetic field orientation at these different scales might arise from the brightest sources in the protocluster, whose collapse is dragging the magnetic field. These sources dominate the gravitational potential and the collapse in the HMC. The cloud-scale magnetic field strength of the G31 hub-filament system, which we estimated using the Davis-Chandrasekhar-Fermi method, is in the range 0.04--0.09 mG. The magnetic field orientation in the star-forming region shows a bimodal distribution, and it changes from an NW--SE direction in the north to an E--W direction in the south [abridged abstract].
Accepted for publiacation in A&A
References in corpus (16)
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Magnetic Fields and Rotations of Protostars
- The formation of ethylene glycol and other complex organic molecules in star-forming regions
- ALMA observations of dust polarization and molecular line emission from the Class 0 protostellar source Serpens SMM1
- 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
- A Decade of SCUBA-2: A Comprehensive Guide to Calibrating 450 m and 850 m Continuum Data at the JCMT
- The GUAPOS project II. A comprehensive study of peptide-like bond molecules
- Magnetic fields in star formation: a complete compilation of all the DCF estimations
- Magnetic field properties in star formation: a review of their analysis methods and interpretation
- Anomalous peculiar motions of high-mass young stars in the Scutum spiral arm
- Multi-scale physical properties of NGC 6334 as revealed by local relative orientations between magnetic fields, density gradients, velocity gradients, and gravity
- Formation of dense structures induced by filament collisions. Correlation of density, kinematics and magnetic field in the Pipe nebula
- Fragmentation in the massive G31.41+0.31 protocluster
- Cloud-cloud collision as origin of the G31.41+0.31 massive protocluster
- A Multi-Scale Picture of Magnetic Field and Gravity from Large-Scale Filamentary Envelope to Core-Accreting Dust Lanes in the High-Mass Star-Forming Region W51
- The sharp ALMA view of infall and outflow in the massive protocluster G31.41+0.31