Tracing magnetic fields by the synergies of synchrotron emission gradients
arXiv:1910.02378 · doi:10.3847/1538-4357/ab4b4a
Abstract
This paper studies how to employ synchrotron emission gradient techniques to reveal the properties of the magnetic field within the interstellar media. Based on data cubes of three-dimensional numerical simulations of magnetohydrodynamic turbulence, we explore spatial gradients of synchrotron emission diagnostics to trace the direction of the magnetic field. According to our simulations, multifarious diagnostics for synchrotron emission can effectively determine the potential direction of projected magnetic fields. Applying the synergies of synchrotron diagnostic gradients to the archive data from the Canadian Galactic Plane Survey, we find that multifarious diagnostic techniques make consistent predictions for the Galactic magnetic field directions. With the high-resolution data presently available from Low Frequency Array for radio astronomy and those in the future from the Square Kilometer Array, the synergies of synchrotron emission gradients are supposed to perform better in tracing the actual direction of interstellar magnetic fields, especially in the low-frequency Faraday rotation regime where traditional synchrotron polarization measure fails.
14 pages, 12 figures and 4 tables. Accepted by ApJ
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Cited by in corpus (6)
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- Studying Anisotropy of Compressible Magnetohydrodynamic Turbulence by Synchrotron Polarization Intensity
- Gradient measurement of synchrotron polarization diagnostic: Application to spatially separated emission and Faraday rotation regions
- Exploring the intermittency of magnetohydrodynamic turbulence by synchrotron polarization radiation
- Studying the properties of compressible MHD turbulence by synchrotron fluctuation statistics
- Measurement of the scaling slope of compressible magnetohydrodynamic turbulence by synchrotron radiation statistics