Magnetization of cloud cores and envelopes and other observational consequences of reconnection diffusion
arXiv:1206.4698 · doi:10.1088/0004-637X/757/2/154
Abstract
Recent observational results for magnetic fields in molecular clouds reviewed by Crutcher (2012) seem to be inconsistent with the predictions of the ambipolar diffusion theory of star formation. These include the measured decrease in mass to flux ratio between envelopes and cores, the failure to detect any self-gravitating magnetically subcritical clouds, the determination of the flat PDF of the total magnetic field strengths implying that there are many clouds with very weak magnetic fields, and the observed scaling that implies gravitational contraction with weak magnetic fields. We consider the problem of magnetic field evolution in turbulent molecular clouds and discuss the process of magnetic field diffusion mediated by magnetic reconnection. For this process that we termed "reconnection diffusion" we provide a simple physical model and explain that this process is inevitable in view of the present day understanding of MHD turbulence. We address the issue of the expected magnetization of cores and envelopes in the process of star formation and show that reconnection diffusion provides an efficient removal of magnetic flux that depends only on the properties of MHD turbulence in the core and the envelope. As a result, the magnetic flux trapped during the collapse in the envelope is being released faster than the flux trapped in the core, resulting in much weaker fields in envelopes than in cores, as observed. We provide simple semi-analytical model calculations which support this conclusion and qualitatively agree with the observational results. We argue that magnetic reconnection provides a solution to the magnetic flux problem of star formation that agrees better with observations than the long-standing ambipolar diffusion paradigm.
22 pages, 11 figures, submitted to ApJ, revised version. arXiv admin note: substantial text overlap with arXiv:1111.0694
References in corpus (10)
- Theory of Star Formation
- Instability of current sheets and formation of plasmoid chains
- The Magnetic Fields of Classical T Tauri Stars
- Numerical Tests of Fast Reconnection in Weakly Stochastic Magnetic Fields
- Gravitational collapse of magnetized clouds. I. Ideal MHD accretion flow
- The Spectral Slope and Kolmogorov Constant of MHD turbulence
- The Power Spectrum of Supersonic Turbulence in Perseus
- Gravitational collapse of magnetized clouds II. The role of Ohmic dissipation
- Onset of Fast Reconnection in Hall Magnetohydrodynamics Mediated by the Plasmoid Instability
- A Model for Spontaneous Onset of Fast Magnetic Reconnection
Cited by in corpus (63)
- The Star Formation Rate of Turbulent Magnetized Clouds: Comparing Theory, Simulations, and Observations
- Turbulent molecular clouds
- Inefficient star formation through turbulence, magnetic fields and feedback
- 3D Turbulent Reconnection: Theory, Tests and Astrophysical Implications
- Partially Ionized Plasmas in Astrophysics
- Astrophysical hydromagnetic turbulence
- The Star Formation Rate in the Gravoturbulent Interstellar Medium
- Grain Alignment by Radiative Torques in Special Conditions and Implications
- Superdiffusion of Cosmic Rays: Implications for Cosmic Ray Acceleration
- Tracing interstellar magnetic field using velocity gradient technique: Application to Atomic Hydrogen data
- A Sub-arcsecond Survey Toward Class 0 Protostars in Perseus: Searching for Signatures of Protostellar Disks
- Turbulent Reconnection and Its Implications
- Moving mesh simulations of star forming cores in magneto-gravo-turbulence
- Statistics of Reconnection-Driven Turbulence
- Magnetized Interstellar Molecular Clouds. I. Comparison Between Simulations and Zeeman Observations
- Turbulent dynamo in a conducting fluid and partially ionized gas
- Change of Magnetic FieldGas Alignment at Gravity-Driven Alfvénic Transition in Molecular Clouds: Implications for Dust Polarization Observations
- Observational Diagnostics of Self-Gravitating MHD Turbulence in Giant Molecular Clouds
- Damping of Alfven waves by Turbulence and its Consequences: from Cosmic-Rays Streaming to Launching Winds
- On the formation of density filaments in the turbulent interstellar medium
- Age, size, and position of H ii regions in the Galaxy. Expansion of ionized gas in turbulent molecular clouds
- Review of Zeeman Effect Observations of Regions of Star Formation
- The SILCC project - V. The impact of magnetic fields on the chemistry and the formation of molecular clouds
- Damping of MHD turbulence in partially ionized plasma: implications for cosmic ray propagation
- The Self-gravitating Gas Fraction and The Critical Density for Star Formation
- Hierarchical Structure of Magnetohydrodynamic Turbulence In Position-Position-Velocity Space
- Extending Velocity Channel Analysis for Studying Turbulence Anisotropies
- Disc formation in turbulent cloud cores: is magnetic flux loss necessary to stop the magnetic braking catastrophe or not?
- An Early Transition to Magnetic Supercriticality in Star Formation
- Interpretation of the structure function of rotation measure in the interstellar medium
- Magnetic fields in the massive dense cores of DR21 filament: weakly magnetized cores in a strongly magnetized filament
- Star formation from dense shocked regions in supersonic isothermal magneto-turbulence
- Kelvin-Helmholtz versus Tearing Instability: What Drives Turbulence in Stochastic Reconnection?
- Trapping of cosmic rays in MHD turbulence
- Turbulence in a self-gravitating molecular cloud core
- MHD Turbulence, Turbulent Dynamo and Applications
- Filaments and striations: anisotropies in observed, supersonic, highly-magnetised turbulent clouds
- Statistical tracing of magnetic fields: comparing and improving the techniques
- The magnetic diffusivities in 3D radiative chemo-hydrodynamic simulations of protostellar collapse
- Collapse of Turbulent Cores and Reconnection Diffusion
- Statistical properties of galactic CMB foregrounds: dust and synchrotron
- Nonlinear turbulent dynamo during gravitational collapse
- The Link between Magnetic-field Orientations and Star Formation Rates
- Orion's Veil: Magnetic field strengths and other properties of a PDR in front of the Trapezium Cluster
- Magnetic Reconnection in Astrophysical Environments
- HAWC+ Far-Infrared Observations of the Magnetic Field Geometry in M51 and NGC 891
- The role of turbulence, magnetic fields and feedback for star formation
- Mapping the Galactic Magnetic Field Orientation and Strength in Three Dimensions
- Probing Three-Dimensional Magnetic Fields: I -- Polarized Dust Emission
- Magnetic fields in early protostellar disk formation
- Opacity Broadening of CO Linewidths and its Effect on the Variance-Sonic Mach Number Relation
- Characterizing three-dimensional magnetic field, turbulence, and self-gravity in the star-forming region L1688
- Diffusion of large-scale magnetic fields by reconnection in MHD turbulence
- Observational Diagnostics for Two-Fluid Turbulence in Molecular Clouds As Suggested by Simulations
- Investigating prominence turbulence with Hinode SOT Dopplergrams
- Interactions between Gas Dynamics and Magnetic Fields in the Massive Dense Cores of the DR21 Filament
- Collapse and Fragmentation of Magnetic Molecular Cloud Cores with the Enzo AMR MHD Code. II. Prolate and Oblate Cores
- Magnetic fields and Star Formation around HII regions: The S235 complex
- The CARMA-NRO Orion Survey: Filament Formation via Collision-Induced Magnetic Reconnection -- The Stick in Orion A
- Probing magnetic fields with Square Kilometre array and its precursors
- The Density-Magnetic Field Relation in the Atomic ISM
- Parallel and Perpendicular Alignments of Velocity Gradient and Magnetic Field observed in the Molecular Clouds L1478 and L1482
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies