Recognizing magnetic structures by present and future radio telescopes with Faraday rotation measure synthesis
arXiv:1204.5694 · doi:10.1051/0004-6361/201219094
Abstract
We investigate whether the method of wavelet-based Faraday rotation measure (RM) Synthesis can help us to identify structures of regular and turbulent magnetic fields in extended magnetized objects, such as galaxies and galaxy clusters. Wavelets allow us to reformulate the RM synthesis method in a scale-dependent way and to visualize the data as a function of Faraday depth and scale. We present observational tests to recognize magnetic field structures. A region with a regular magnetic field generates a broad "disk" in Faraday space ("Faraday spectrum"), with two "horns" when the distribution of cosmic-ray electrons is broader than that of the thermal electrons. Each magnetic field reversal generates one asymmetric "horn" on top of the "disk". A region with a turbulent field can be recognized as a "Faraday forest" of many components. These tests are applied to the spectral ranges of various synthesis radio telescopes. We argue that the ratio of maximum to minimum wavelengths determines the range of scales that can be identified in Faraday space. A reliable recognition of magnetic field structures requires the analysis of data cubes in position-position-Faraday depth space ("PPF cubes"), observed over a wide and continuous wavelength range, allowing the recognition of a wide range of scales as well as high resolution in Faraday space. The planned Square Kilometre Array (SKA) will fulfill this condition and will be close to representing a perfect "Faraday telescope". The combination of data from the Low Frequency Array (LOFAR) and the Expanded Very Large Array (EVLA) appears to be a promising approach for the recognition of magnetic structures on all scales. The addition of data at intermediate frequencies from the Westerbork Synthesis Radio Telescope (WSRT) or the Giant Meterwave Radio Telescope (GMRT) would fill the gap between the LOFAR and EVLA frequency ranges.
References in corpus (15)
- Science with ASKAP - the Australian Square Kilometre Array Pathfinder
- Observing pulsars and fast transients with LOFAR
- Modeling the Magnetic Field in the Galactic Disk using New Rotation Measure Observations from the Very Large Array
- Complex Faraday depth structure of Active Galactic Nuclei as revealed by broadband radio polarimetry
- Integrated Polarization of Sources at lambda ~1m and New Rotation Measure Ambiguities
- Deep multi-frequency rotation measure tomography of the galaxy cluster A2255
- Antisymmetry in the Faraday Rotation Sky Caused by a Nearby Magnetized Bubble
- The application of compressive sampling to radio astronomy II: Faraday rotation measure synthesis
- Faraday Rotation Measure Synthesis for Magnetic Fields of Galaxies
- Optimum frequency band for radio polarisation observations
- Wide field polarimetry around the Perseus cluster at 350 MHz
- Faraday synthesis: The synergy of aperture and rotation measure synthesis
- Sparse Faraday Rotation Measure Synthesis
- Deep Radio Continuum Imaging of the Dwarf Irregular Galaxy IC10: Tracing Star Formation and Magnetic Fields
- Faraday caustics: Singularities in the Faraday spectrum and their utility as probes of magnetic field properties
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- A Broadband Polarization Catalog of Extragalactic Radio Sources
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- ATLAS 1.4 GHz Data Release 2 -- I. Observations of the CDF-S and ELAIS-S1 fields and methods for constructing differential number counts
- The Galactic Magneto-Ionic Medium Survey: Moments of the Faraday Spectra
- Plasma Diagnostics of the Interstellar Medium with Radio Astronomy
- The interpretation of Rotation Measures in the presence of inhomogeneous foreground screens
- Faraday Rotation Measure Synthesis of intermediate redshift quasars as a probe of intervening matter
- Cosmic Magnetism in Centimeter and Meter Wavelength Radio Astronomy
- Polarized synchrotron radiation from the Andromeda Galaxy M31 and background sources at 350 MHz
- Studying Magnetohydrodynamic Turbulence with Synchrotron Polarization Dispersion
- Exploring the Intergalactic Magnetic Field by Means of Faraday Tomography
- Faraday signature of magnetic helicity from reduced depolarization
- Properties of Intrinsic Polarization Angle Ambiguities in Faraday Tomography
- Spectral properties of magnetohydrodnamic turbulence revealed by polarization synchrotron emission with Faraday rotation
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- The LOFAR View of Cosmic Magnetism
- Reliable detection and characterization of low-frequency polarized sources in the LOFAR M51 field
- Magnetic field tomography, helical magnetic fields and Faraday depolarization
- Tracing Magnetic Field with Synchrotron Polarization Gradients: Parameter Study
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- Performance test of QU-fitting in cosmic magnetism study
- Study of Vertical Magnetic Field in Face-on Galaxies using Faraday Tomography
- The Global Magneto-Ionic Medium Survey (GMIMS): The brightest polarized region in the Southern sky at 75cm and its implications for Radio Loop II
- An Iterative Reconstruction Algorithm for Faraday Tomography
- Improved CLEAN reconstructions for rotation measure synthesis with maximum likelihood estimation
- Introduction to Faraday tomography and its future prospects
- Magnetic arms of NGC6946 traced in the Faraday cubes at low radio frequencies
- Broad-band Radio Polarimetry of disk galaxies and AGN with KAT 7