Magnetic field strength from turbulence theory (I): Using differential measure approach (DMA)
arXiv:2204.09731 · doi:10.3847/1538-4357/ac6877
Abstract
The mean plane-of-sky magnetic field strength is traditionally obtained from the combination of polarization and spectroscopic data using the Davis-Chandrasekhar-Fermi (DCF) technique. However, we identify the major problem of the DCF to be its disregard of the anisotropic character of MHD turbulence. On the basis of the modern MHD turbulence theory we introduce a new way of obtaining magnetic field strength from observations. Unlike the DCF, the new technique uses not the dispersion of the polarization angle and line of sight velocities, but increments of these quantities given by the structure functions. To address the variety of the astrophysical conditions for which our technique can be applied, we consider the turbulence in both media with magnetic pressure larger than the gas pressure corresponding e.g. to molecular and the gas pressure larger than the magnetic pressure corresponding to the warm neutral medium. We provide general expressions for arbitrary admixture of Alfvén, slow and fast modes in these media and consider in detail the particular cases relevant to diffuse media and molecular clouds. We successfully test our results using synthetic observations obtained from MHD turbulence simulations. We demonstrate that our Differential Measure Approach (DMA), unlike the DCF, can be used to measure the distribution of magnetic field strengths, can provide magnetic field measurements with limited data and is much more stable in the presence of large scale variations induces of non-turbulent nature. In parallel, our study uncover the deficiencies of the earlier DCF research.
53 pages, 32 figures, Accepted by ApJ for publications. Code: https://github.com/kyuen2/MHD_Mode
References in corpus (35)
- Theory of Star Formation
- Radiative torques: Analytical Model and Basic Properties
- The Magnetic Fields of Classical T Tauri Stars
- Magnetic Fields in the Formation of Sun-Like Stars
- Compressible Turbulence in Galaxy Clusters: Physics and Stochastic Particle Re-acceleration
- Simulations of nonhelical hydromagnetic turbulence
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- Radiative torque alignment: Essential Physical Processes
- Gravitational collapse of magnetized clouds. I. Ideal MHD accretion flow
- Magnetic field amplification in turbulent astrophysical plasmas
- The sonic scale revealed by the world's largest supersonic turbulence simulation
- Velocity centroids as tracers of the turbulent velocity statistics
- Tracing interstellar magnetic field using velocity gradient technique: Application to Atomic Hydrogen data
- High-accuracy estimation of magnetic field strength in the interstellar medium from dust polarization
- Magnetic Field Morphology in Interstellar Clouds with the Velocity Gradient Technique
- The structure and statistics of interstellar turbulence
- Damping of Alfven waves by Turbulence and its Consequences: from Cosmic-Rays Streaming to Launching Winds
- Studying Turbulence from Doppler-broadened Absorption Lines: Statistics of Logarithms of Intensity
- Turbulence Spectra from Spectral Lines: Tests of the Velocity Channel Analysis and Velocity Coordinate Spectrum Techniques
- Measuring the Alfvenic Nature of the Interstellar Medium: Velocity Anisotropy Revisited
- Polarization of absorption lines as a diagnostics of circumstellar, interstellar and intergalactic magnetic fields: Fine structure atoms
- Mapping the magnetic field in the Taurus/B211 filamentary cloud with SOFIA HAWC+ and comparing with simulation
- Suppression of small scale dynamo action by an imposed magnetic field
- Study of velocity centroids based on the theory of fluctuations in position-position-velocity space
- Magnetic field fluctuations in anisotropic, supersonic turbulence
- Magnetic Fields in Massive Star-Forming Regions (MagMaR) II. Tomography Through Dust and Molecular Line Polarization in NGC 6334I(N)
- Atomic alignment and Diagnostics of Magnetic Fields in Diffuse Media
- Measuring Turbulence with Young Stars in the Orion Complex
- Anisotropies in Compressible MHD Turbulence: Probing Magnetic Fields and Measuring Magnetization
- Polarization from aligned atoms as a diagnostics of circumstellar, AGN and interstellar magnetic fields: II. Atoms with Hyperfine Structure
- Anisotropic Turbulence in Position-Position-Velocity Space: Probing Three-Dimensional Magnetic Fields
- Studying the local magnetic field and anisotropy of magnetic turbulence by synchrotron polarization derivative
- Polarisation of submillimetre lines from interstellar medium
- Tracing Magnetic Fields by Atomic Alignment in Extended Radiation Fields
- Monte-Carlo Applications for Partially Polarized Inverse External-Compton Scattering (MAPPIES) II -- Application to the UV/Soft X-ray Excess in Blazar Spectra
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- Neutral hydrogen filaments in interstellar media: Are they physical?
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