Faraday signature of magnetic helicity from reduced depolarization
arXiv:1401.4102 · doi:10.1088/0004-637X/786/2/91
Abstract
Using one-dimensional models, we show that a helical magnetic field with an appropriate sign of helicity can compensate the Faraday depolarization resulting from the superposition of Faraday-rotated polarization planes from a spatially extended source. For radio emission from a helical magnetic field, the polarization as a function of the square of the wavelength becomes asymmetric with respect to zero. Mathematically speaking, the resulting emission occurs then either at observable or at unobservable (imaginary) wavelengths. We demonstrate that rotation measure (RM) synthesis allows for the reconstruction of the underlying Faraday dispersion function in the former case, but not in the latter. The presence of positive magnetic helicity can thus be detected by observing positive RM in highly polarized regions in the sky and negative RM in weakly polarized regions. Conversely, negative magnetic helicity can be detected by observing negative RM in highly polarized regions and positive RM in weakly polarized regions. The simultaneous presence of two magnetic constituents with opposite signs of helicity is shown to possess signatures that can be quantified through polarization peaks at specific wavelengths and the gradient of the phase of the Faraday dispersion function. Similar polarization peaks can tentatively also be identified for the bi-helical magnetic fields that are generated self-consistently by a dynamo from helically forced turbulence, even though the magnetic energy spectrum is then continuous. Finally, we discuss the possibility of detecting magnetic fields with helical and non-helical properties in external galaxies using the Square Kilometre Array.
12 pages, 12 figures, ApJ, in press (with 3-D turbulence results now included)
References in corpus (7)
- Current status of turbulent dynamo theory: From large-scale to small-scale dynamos
- Direct simulations of a supernova-driven galactic dynamo
- Small-scale magnetic helicity losses from a mean-field dynamo
- Cosmic ray current-driven turbulence and mean-field dynamo effect
- Magnetic helicity and energy spectra of a solar active region
- Polarized synchrotron radiation from the Andromeda Galaxy M31 and background sources at 350 MHz
- Two Radio Supernova Remnants Discovered in the Outer Galaxy
Cited by in corpus (24)
- Magnetic Fields in Spiral Galaxies
- Advances in mean-field dynamo theory and applications to astrophysical turbulence
- Comparison of algorithms for determination of rotation measure and Faraday structure I. 1100 - 1400 MHz
- Galactic Dynamos
- The correct sense of Faraday rotation
- Practical Modeling of Large-Scale Galactic Magnetic Fields: Status and Prospects
- Cosmic Magnetism in Centimeter and Meter Wavelength Radio Astronomy
- Scale-invariant helical magnetic field evolution and the duration of inflation
- Generation of large-scale magnetic fields, non-Gaussianity, and primordial gravitational waves in inflationary cosmology
- Magnetic field tomography, helical magnetic fields and Faraday depolarization
- Joint inverse cascade of magnetic energy and magnetic helicity in MHD turbulence
- Simulations of galactic dynamos
- Features of collisionless turbulence in the intracluster medium from simulated Faraday Rotation maps
- Helicity in the Large-Scale Galactic Magnetic Field
- Batchelor, Saffman, and Kazantsev spectra in galactic small-scale dynamos
- Intergalactic medium rotation measure of primordial magnetic fields
- A global two-scale helicity proxy from -ambiguous solar magnetic fields
- Magnetic Helicity from Multipolar Regions on the Solar Surface
- Gaussian Process Modelling for Improved Resolution in Faraday Depth Reconstruction
- Compensating Faraday depolarization by magnetic helicity in the solar corona
- Application of a helicity proxy to edge-on galaxies
- Hemispheric handedness in the Galactic synchrotron polarization foreground
- Magnetic field evolution in solar-type stars
- Magnetic field spreading from stellar and galactic dynamos into the exterior