A Census of Outflow to Magnetic Field Orientations in Nearby Molecular Clouds
arXiv:2211.03781 · doi:10.3847/1538-4357/aca153
Abstract
We define a sample of 200 protostellar outflows showing blue and redshifted CO emission in the nearby molecular clouds Ophiuchus, Taurus, Perseus and Orion to investigate the correlation between outflow orientations and local, but relatively large-scale, magnetic field directions traced by Planck 353 GHz dust polarization. At high significance (p~1e-4), we exclude a random distribution of relative orientations and find that there is a preference for alignment of projected plane of sky outflow axes with magnetic field directions. The distribution of relative position angles peaks at ~30deg and exhibits a broad dispersion of ~50deg. These results indicate that magnetic fields have dynamical influence in regulating the launching and/or propagation directions of outflows. However, the significant dispersion around perfect alignment orientation implies that there are large measurement uncertainties and/or a high degree of intrinsic variation caused by other physical processes, such as turbulence or strong stellar dynamical interactions. Outflow to magnetic field alignment is expected to lead to a correlation in the directions of nearby outflow pairs, depending on the degree of order of the field. Analyzing this effect we find limited correlation, except on relatively small scales < 0.5 pc. Furthermore, we train a convolutional neural network to infer the inclination angle of outflows with respect to the line of sight and apply it to our outflow sample to estimate their full 3D orientations. We find that the angles between outflow pairs in 3D space also show evidence of small-scale alignment.
ApJ Accepted
References in corpus (27)
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- The COMPLETE Survey of Star-Forming Regions: Phase I Data
- Inefficient star formation through turbulence, magnetic fields and feedback
- STARFORGE: Toward a comprehensive numerical model of star cluster formation and feedback
- The Five College Radio Astronomy Observatory CO Mapping Survey of the Taurus Molecular Cloud
- Interferometric observations of magnetic fields in forming stars
- The Turbulent Origin of Outflow and Spin Misalignment in Multiple Star Systems
- Planck intermediate results. XXI. Comparison of polarized thermal emission from Galactic dust at 353 GHz with interstellar polarization in the visible
- Impact of Protostellar Outflows on Turbulence and Star Formation Efficiency in Magnetized Dense Cores
- Rotating molecular outflows: the young T Tauri star in CB26
- STARFORGE: The effects of protostellar outflows on the IMF
- Alignment Between Protostellar Outflows and Filamentary Structure
- The Formation and Evolution of Wide-Orbit Stellar Multiples In Magnetized Clouds
- The JCMT BISTRO Survey: Magnetic Fields Associated with a Network of Filaments in NGC 1333
- Star-Gas Surface Density Correlations in Twelve Nearby Molecular Clouds I: Data Collection and Star-Sampled Analysis
- Widespread Molecular Outflows in the Infrared Dark Cloud G28.37+0.07: Indications of Orthogonal Outflow-Filament Alignment
- The JCMT BISTRO Survey: The Distribution of Magnetic Field Strengths towards the OMC-1 Region
- Synthetic Observations of Magnetic Fields in Protostellar Cores
- Misalignment of Magnetic Fields, Outflows and Discs in Star-forming Clouds
- Catalog of dense cores in the Orion A giant molecular cloud
- Nobeyama 45-m mapping observations toward nearby molecular clouds, Orion A, Aquila Rift, and M17: Project overview
- The JCMT BISTRO survey: alignment between outflows and magnetic fields in dense cores/clumps
- The CARMA-NRO Orion Survey: Protostellar Outflows, Energetics, and Filamentary Alignment
- Nobeyama 45 m Mapping Observations toward Orion A. II. Classification of cloud structures and variation of the CO/CO abundance ratio due to far-UV Radiation
- Application of Convolutional Neural Networks to Identify Stellar Feedback Bubbles in CO Emission
- Application of Convolutional Neural Networks to Identify Protostellar Outflows in CO Emission
- A Census of Protostellar Outflows in Nearby Molecular Clouds
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- The Evolution of Protostellar Outflow Cavities, Kinematics, and Angular Distribution of Momentum and Energy in Orion A: Evidence for Dynamical Cores
- Denoising Diffusion Probabilistic Models to Predict the Density of Molecular Clouds
- Evolution of the Angular Momentum of Molecular Cloud Cores Formed from Filament Fragmentation
- Alignment of dense molecular core morphology and velocity gradients with ambient magnetic fields
- Disk Wind Feedback from High-mass Protostars. II. The Evolutionary Sequence