Probing Three-Dimensional Magnetic Fields: I -- Polarized Dust Emission
arXiv:2203.09745 · doi:10.1093/mnras/stac3744
Abstract
Polarized dust emission is widely used to trace the plane-of-the-sky (POS) component of interstellar magnetic fields in two dimensions. Its potential to access three-dimensional magnetic fields, including the inclination angle of the magnetic fields relative to the line-of-sight (LOS), is crucial for a variety of astrophysical problems. Based on the statistical features of observed polarization fraction and POS Alfvén Mach number distribution, we present a new method for estimating the inclination angle. The magnetic field fluctuations raised by anisotropic magnetohydrodynamic (MHD) turbulence are taken into account in our method. By using synthetic dust emission generated from 3D compressible MHD turbulence simulations, we show that the fluctuations are preferentially perpendicular to the mean magnetic field. We find the inclination angle is the major agent for depolarization, while fluctuations of magnetic field strength and density have an insignificant contribution. We propose and demonstrate that the mean inclination angle over a region of interest can be calculated from the polarization fraction in a strongly magnetized reference position, where . We test and show that the new method can trace the 3D magnetic fields in sub-Alfvénic, trans-Alfvénic, and moderately super-Alfvénic conditions (). We numerically quantify that the difference between the estimated inclination angle and actual inclination angle ranges from 0 to with a median value of .
14 pages, 11 figures, accepted for publication in MNRAS
References in corpus (30)
- The Gaia mission
- Theory of Star Formation
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- Tracing Magnetic Fields with Aligned Grains
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- The link between turbulence, magnetic fields, filaments, and star formation in the Central Molecular Zone cloud G0.253+0.016
- Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence
- Velocity Gradients as a Tracer for Magnetic Fields
- Mapping the Magnetic Interstellar Medium in Three Dimensions Over the Full Sky with Neutral Hydrogen
- The role of magnetic fields in the formation of protostellar discs
- Magnetic Field Morphology in Interstellar Clouds with the Velocity Gradient Technique
- Superdiffusion of Cosmic Rays in Compressible Magnetized Turbulence
- Radio spectral properties and the magnetic field of the SNR S147
- 3D magnetic field morphology of the Perseus molecular cloud
- Mapping the magnetic field in the Taurus/B211 filamentary cloud with SOFIA HAWC+ and comparing with simulation
- Study of velocity centroids based on the theory of fluctuations in position-position-velocity space
- The JCMT BISTRO Survey: The Distribution of Magnetic Field Strengths towards the OMC-1 Region
- Revealing Gravitational Collapse in Serpens G3-G6 Molecular Cloud using Velocity Gradients
- Alignment and rotational disruption of dust
- Measuring Turbulence with Young Stars in the Orion Complex
- Turbulence in Milky Way Star-Forming Regions Traced by Young Stars and Gas
- Anisotropies in Compressible MHD Turbulence: Probing Magnetic Fields and Measuring Magnetization
- The Atacama Cosmology Telescope: Microwave Intensity and Polarization Maps of the Galactic Center
- Multi-scale Magnetic Fields in the Central Molecular Zone: Inference from the Gradient Technique
- Predictions of Cosmic Microwave Background Foregrounds Dust Polarization Using Velocity Gradients
- Measuring magnetization with rotation measures and velocity centroids in supersonic MHD turbulence
- Anisotropic Turbulence in Position-Position-Velocity Space: Probing Three-Dimensional Magnetic Fields
- The JCMT BISTRO Survey: Multi-wavelength polarimetry of bright regions in NGC 2071 in the far-infrared/submillimetre range, with POL-2 and HAWC+
- Characterising the Magnetic Fields of Nearby Molecular Clouds using Submillimeter Polarization Observations
- Magnetic field structure of OMC-3 in the far infrared revealed by SOFIA/HAWC+
Cited by in corpus (4)
- Starlight-polarization-based tomography of the magnetized interstellar medium: PASIPHAE's line-of-sight inversion method
- Nature of Striation in 21 cm Channel Maps: Velocity Caustics
- Mapping the Galactic Magnetic Field Orientation and Strength in Three Dimensions
- Characterizing three-dimensional magnetic field, turbulence, and self-gravity in the star-forming region L1688