Imprints of magnetic power and helicity spectra on radio polarimetry statistics
arXiv:1008.1243 · doi:10.1051/0004-6361/201015544
Abstract
Statistical properties of turbulent magnetic fields in radio-synchrotron sources should imprint on the statistics of polarimetric observables. In search of these imprints, we calculate correlation and cross-correlation functions from a set of observables containing the total intensity I, the polarized intensity P and the Faraday depth phi. The correlation functions are evaluated for all combinations of observables up to fourth order in the magnetic field B. We derive these as far as possible analytically and from first principles only using some basic assumptions such as Gaussian statistics of the underlying magnetic field in the observed region and statistical homogeneity. We further assume some simplifications to reduce the complexity of the calculations, as for a start we were interested in a proof of concept. Using this statistical approach, we show that it is in principle possible to gain information about the helical part of the magnetic power spectrum, namely via the correlation functions <P(k)phi(k')phi(k")> and <I(k)phi(k')phi(k")>. Using this insight, we construct an easy-to-use test for helicity, called LITMUS (Local Inference Test for Magnetic fields which Uncovers heliceS). For now, all calculations are given in a Faraday-free case, but set up in a way so that Faraday rotational effects could be included later on.
24 pages, 4 figures; typos corrected; additional explanations in section 1 and 2; revised and extended derivation in section 5, results unchanged
References in corpus (6)
- Rotation Measures of Extragalactic Sources Behind the Southern Galactic Plane: New Insights into the Large-Scale Magnetic Field of the Inner Milky Way
- A Global Probe of Cosmic Magnetic Fields to High Redshifts
- Galactic dynamo and helicity losses through fountain flow
- Strong mean field dynamos require supercritical helicity fluxes
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- Studying Galactic interstellar turbulence through fluctuations in synchrotron emission: First LOFAR Galactic foreground detection
- Spectrum and Anisotropy of Turbulence from Multi-Frequency Measurement of Synchrotron Polarization
- RESOLVE: A new algorithm for aperture synthesis imaging of extended emission in radio astronomy
- Probing magnetic helicity with synchrotron radiation and Faraday rotation
- Cosmological magnetic field correlators from blazar induced cascade
- Faraday signature of magnetic helicity from reduced depolarization
- Faraday caustics: Singularities in the Faraday spectrum and their utility as probes of magnetic field properties
- Magnetic field tomography, helical magnetic fields and Faraday depolarization
- Studying the local magnetic field and anisotropy of magnetic turbulence by synchrotron polarization derivative
- Helicity in the Large-Scale Galactic Magnetic Field
- Gradient measurement of synchrotron polarization diagnostic: Application to spatially separated emission and Faraday rotation regions
- Polarization properties of turbulent synchrotron bubbles: an approach based on Chandrasekhar-Kendall functions
- Application of a helicity proxy to edge-on galaxies
- Hemispheric handedness in the Galactic synchrotron polarization foreground