Interferometric observations of magnetic fields in forming stars
arXiv:1903.03177 · doi:10.3389/fspas.2019.00003
Abstract
The magnetic field is a key ingredient in the recipe of star formation. Over the past two decades, millimeter and submillimeter interferometers have made major strides in unveiling the role of the magnetic field in star formation at progressively smaller spatial scales. From the kiloparsec scale of molecular clouds down to the inner few hundred au immediately surrounding forming stars, the polarization at millimeter and submillimeter wavelengths is dominated by polarized thermal dust emission, where the dust grains are aligned relative to the magnetic field. Interferometric studies have focused on this dust polarization and occasionally on the polarization of spectral-line emission. We review the current state of the field of magnetized star formation in the context of several questions that continue to motivate the studies of high- and low-mass star formation. By aggregating and analyzing the results from individual studies, we come to several conclusions: (1) Magnetic fields and outflows from low-mass protostellar cores are randomly aligned, suggesting that the magnetic field at ~1000 au scales is not the dominant factor in setting the angular momentum of embedded disks and outflows. (2) Recent measurements of the thermal and dynamic properties in high-mass star-forming regions reveal small virial parameters, challenging the assumption of equilibrium star formation. However, we estimate that a magnetic field strength of a fraction of a mG to several mG in these objects could bring the dense gas close to a state of equilibrium. Finally, (3) We find that the small number of sources with hourglass-shaped magnetic field morphologies at 0.01 -- 0.1 pc scales cannot be explained purely by projection effects, suggesting that while it does occur occasionally, magnetically dominated core collapse is not the predominant mode of low- or high-mass star formation. [Abridged]
45 pages, 9 figures, published in Frontiers in Astronomy and Space Sciences. The published, open-access version (26 pages) is available here: https://www.frontiersin.org/articles/10.3389/fspas.2019.00003/full
References in corpus (66)
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- Tracing Magnetic Fields with Aligned Grains
- Magnetic Fields in the Formation of Sun-Like Stars
- Magnetic Braking and Protostellar Disk Formation: The Ideal MHD Limit
- A Triple Protostar System Formed via Fragmentation of a Gravitationally Unstable Disk
- 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
- A Magnetized Jet from a Massive Protostar
- Formation of a Keplerian disk in the infalling envelope around L1527 IRS: transformation from infalling motions to Kepler motions
- Fragmentation of Molecular Clumps and Formation of Protocluster
- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Non-Ideal Magnetohydrodynamic Effects and Early Formation of Circumstellar Disks
- Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence
- Gravitational collapse of magnetized clouds. I. Ideal MHD accretion flow
- The evidence of radio polarization induced by the radiative grain alignment and self-scattering of dust grains in a protoplanetary disk
- The JCMT BISTRO Survey: The magnetic field strength in the Orion A filament
- Spatially Resolved Magnetic Field Structure in the Disk of a T Tauri Star
- ALMA Reveals Transition of Polarization Pattern with Wavelength in HL Tau's Disk
- Velocity Gradients as a Tracer for Magnetic Fields
- Submillimeter polarization observation of the protoplanetary disk around HD 142527
- Misaligned Protoplanetary Disks in a Young Binary System
- The Turbulent Origin of Outflow and Spin Misalignment in Multiple Star Systems
- On the radiation driven alignment of dust grains: Detection of the polarization hole in a starless core
- ALMA observations of dust polarization and molecular line emission from the Class 0 protostellar source Serpens SMM1
- Tracing interstellar magnetic field using velocity gradient technique: Application to Atomic Hydrogen data
- Planck intermediate results. XXI. Comparison of polarized thermal emission from Galactic dust at 353 GHz with interstellar polarization in the visible
- Unveiling the Role of the Magnetic Field at the Smallest Scales of Star Formation
- Evolution of Magnetic Fields in High Mass Star Formation: Linking field geometry and collapse for the W51 e2/e8 cores
- Impact of Protostellar Outflows on Turbulence and Star Formation Efficiency in Magnetized Dense Cores
- Moving mesh simulations of star forming cores in magneto-gravo-turbulence
- Full-Polarization Observations of OH Masers in Massive Star-Forming Regions: II. Maser Properties and the Interpretation of Polarization
- Grain Alignment and Polarized Emission from Magnetized T Tauri Disks
- Evolution of Rotating Molecular Cloud Core with Oblique Magnetic Field
- The role of magnetic fields in the formation of protostellar discs
- Magnetic fields in massive star forming regions
- Submillimeter Array Observations of Magnetic Fields in G240.31+0.07: an Hourglass in a Massive Cluster-forming Core
- Alignment Between Protostellar Outflows and Filamentary Structure
- Dense core properties in the Infrared Dark cloud G14.225-0.506 revealed by ALMA
- The impact of the Hall effect during cloud core collapse:implications for circumstellar disk evolution
- Results of SPARO 2003: Mapping Magnetic Fields in Giant Molecular Clouds
- Accretion and magnetic field morphology around Class 0 stage protostellar discs
- The Magnetic Field in the Class 0 Protostellar Disk of L1527
- The Importance of the Magnetic Field from an SMA-CSO-Combined Sample of Star-Forming Regions
- Modeling the magnetic field in the protostellar source NGC 1333 IRAS 4A
- On the Role of Pseudodisk Warping and Reconnection in Protostellar Disk Formation in Turbulent Magnetized Cores
- Dust Polarization Toward Embedded Protostars in Ophiuchus with ALMA. II. IRAS 16293-2422
- The dense gas mass fraction in the W51 cloud and its protoclusters
- The Next Generation BLAST Experiment
- Investigating dust trapping in transition disks with millimeter-wave polarization
- Two Bipolar Outflows and Magnetic Fields in a Multiple Protostar System, L1448 IRS 3
- Formation of Wide Binaries by Turbulent Fragmentation
- Synthetic Observations of Magnetic Fields in Protostellar Cores
- Magnetized converging flows towards the hot core in the intermediate/high-mass star-forming region NGC 6334 V
- Polarimetry at millimeter wavelengths with the NIKA camera: calibration and performance
- Millimeter- and Submillimeter-Wave Observations of the OMC-2/3 Region; I. Dispersing and Rotating Core around an Intermediate-mass Protostar MMS 7
- Magnetic fields in circumstellar disks: The potential of Zeeman observations
- Interferometric mapping of Magnetic fields: G30.79 FIR 10
- Far-infrared polarimetry from the Stratospheric Observatory for Infrared Astronomy
- Shaping a high-mass star-forming cluster through stellar feedback. The case of the NGC 7538 IRS 1-3 complex
- Interferometric Mapping of Magnetic Fields: The massive star forming region G34.4+0.23 MM
- Interferometric Mapping of Magnetic fields: NGC2071IR
- Magnetic field structure in the Flattened Envelope and Jet in the young protostellar system HH 211
- Testing Magnetic Field Models for the Class 0 Protostar L1527
- Submillimeter Polarimetry with PolKa, a reflection-type modulator for the APEX telescope
- 1.3mm polarized emission in the circumstellar disk of a massive protostar
- NGC 7538 IRS1: Interaction of a polarized dust spiral and a molecular outflow
Cited by in corpus (54)
- CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope
- Gravity Driven Magnetic Field at ~1000 au Scales in High-mass Star Formation
- High-accuracy estimation of magnetic field strength in the interstellar medium from dust polarization
- Submillimeter and Far-Infrared Polarimetric Observations of Magnetic Fields in Star-Forming Regions
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- The JCMT BISTRO Survey: Magnetic Fields Associated with a Network of Filaments in NGC 1333
- JCMT POL-2 and BISTRO Survey observations of magnetic fields in the L1689 molecular cloud
- On Internal and External Alignment of Dust Grains in Protostellar Environments
- Magnetic Fields in Massive Star-Forming Regions (MagMaR) I. Linear Polarized Imaging of the UCHII Region G5.89-0.39
- Magnetic field properties in star formation: a review of their analysis methods and interpretation
- The ALMA Survey of 70 m Dark High-mass Clumps in Early Stages (ASHES). IV. Star formation signatures in G023.477
- Magnetic Properties of Star-Forming Dense Cores
- Magnetic Fields in Massive Star-Forming Regions (MagMaR) II. Tomography Through Dust and Molecular Line Polarization in NGC 6334I(N)
- The impact of non-ideal magnetohydrodynamic processes on discs, outflows, counter-rotation and magnetic walls during the early stages of star formation
- Revealing the diverse magnetic field morphologies in Taurus dense cores with sensitive sub-millimeter polarimetry
- The JCMT BISTRO survey: alignment between outflows and magnetic fields in dense cores/clumps
- ALMA CN Zeeman Observations of AS 209: Limits on Magnetic Field Strength and Magnetically Driven Accretion Rate
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- II. Compact objects in ACA observations and star formation scaling relations
- ALMA observations reveal no preferred outflow--filament and outflow--magnetic field orientations
- FAUST III. Misaligned rotations of the envelope, outflow, and disks in the multiple protostellar system of VLA 16232417
- Gravity and rotation drag the magnetic field in high-mass star formation
- A Massive Star is Born: How Feedback from Stellar Winds, Radiation Pressure, and Collimated Outflows Limits Accretion onto Massive Stars
- OMC-1 dust polarisation in ALMA Band 7: Diagnosing grain alignment mechanisms in the vicinity of Orion Source I
- Multi-scale physical properties of NGC 6334 as revealed by local relative orientations between magnetic fields, density gradients, velocity gradients, and gravity
- An observational correlation between magnetic field, angular momentum and fragmentation in the envelopes of Class 0 protostars?
- On the magnetic field properties of protostellar envelopes in Orion
- Physical Modeling of Dust Polarization from Magnetically Enhanced Radiative Torque (MRAT) Alignment in Protostellar Cores with POLARIS
- On the origin of magnetic fields in stars II: The effect of numerical resolution
- Size limit of superparamagnetic inclusions in dust grains and difficulty of magnetic grain alignment in protoplanetary disks
- The magnetic properties of the protostellar core IRAS 15398-3359
- Discovery of Molecular Line Polarization in the Disk of TW Hya
- Physical and Chemical Structure of the Disk and Envelope of the Class 0/I Protostar L1527
- Magnetic Field Structure in Spheroidal Star-Forming Clouds. II. Estimating Field Structure from Observed Maps
- A Census of Outflow to Magnetic Field Orientations in Nearby Molecular Clouds
- Magnetic fields and outflows in the large Bok globule CB 54
- EVN observations of 6.7 GHz methanol maser polarization in massive star-forming regions. V. Completion of the flux-limited sample
- The Twisted Magnetic Field of the Protobinary L483
- The JCMT BISTRO-2 Survey: The Magnetic Field in the Center of the Rosette Molecular Cloud
- Outflows, cores and magnetic field orientations in W43-MM1 as seen by ALMA
- Detection of Substructures in Young Transition Disk WL 17
- Tracing the large-scale magnetic field morphology in protoplanetary disks using molecular line polarization
- The Transition of Polarized Dust Thermal Emission from the Protostellar Envelope to the Disk Scale
- Synthetic Modelling of Polarized Dust Emission in Intermediate-Mass YSOs: I: Constraining the Role of Iron Inclusions and Inelastic Relaxation on Grain Alignment with ALMA Polarization
- The generation and transformation of polarisation signals in molecular lines through collective anisotropic resonant scattering
- Centrifugal Barrier and Super-Keplerian Rotation in Protostellar Disk Formation
- Evolution of magnetized hub-filament systems: Comparing the observed properties of W3(OH), W3 Main, and S 106
- Sulfur oxides tracing streamers and shocks at low mass protostellar disk-envelope interfaces
- Striations, integrals, hourglasses and collapse -- thermal instability driven magnetic simulations of molecular clouds
- Hourglass Magnetic Field of a Protostellar System
- Probing Magnetic Fields in Protoplanetary Disk Atmospheres through Polarized Optical/IR Light Scattered by Aligned Grains
- Wavelength-dependent far-infrared polarization of HL Tau observed with SOFIA/HAWC+
- The kinematics of the magnetised protostellar core IRAS15398-3359
- The Impact of Expanding HII Regions on Filament G37:Curved Magnetic Field and Multiple Direction Material Flows
- Interstellar filament detection and characterization: methods and implications for studies of magnetized interstellar medium