Connecting Magnetic Towers with Faraday Rotation Gradients in Active Galactic Nuclei Jets
arXiv:1302.1346 · doi:10.1093/mnras/stt201
Abstract
The idea that systematic Faraday Rotation gradients across the parsec-scale jets of AGNs can reveal the presence of helical magnetic (B) fields has been around since the early 1990s. These gradients are taken to be due to the systematic variation of the line of sight-B-field across the jet. We present here the parsec-scale Faraday Rotation distributions for the BL Lac objects 0716+714 and 1749+701, based on polarization data obtained with the Very Long Baseline Array (VLBA) at two wavelengths near each of the 2cm, 4cm and 6cm bands (0716+714) and at four wavelengths in the range 18-22 cm (1749+701). The Rotation Measure (RM) maps for both these sources indicate systematic gradients across their jets, as expected if these jets have helical B fields. The significance of these transverse RM gradients is > 3 sigma in all cases. We present the results of Monte Carlo simulations directly demonstrating the possibility of observing such transverse RM gradients even if the intrinsic jet structure is much narrower than the observing beam. We observe an intriguing new feature in these sources, a reversal in the direction of the gradient in the jet as compared to the gradient in the core region. This provides new evidence to support models in which field lines emerging from the central region of the accretion disk and closing in the outer region of the accretion disk are both "wound up" by the differential rotation of the disk. The net observed RM gradient will essentially be the sum effect of two regions of helical field, one nested inside the other. The direction of the net RM gradient will be determined by whether the inner or outer helix dominates the RM integrated through the jet, and RM gradient reversals will be observed if the inner and outer helical fields dominate in different regions of the jet. This potentially provides new insights about the overall configuration of the jet B fields.
16 pages, 15 figures, accepted for publication in MNRAS
References in corpus (6)
- MOJAVE: Monitoring of Jets in Active Galactic Nuclei with VLBA Experiments. VIII. Faraday rotation in parsec-scale AGN jets
- Aligning VLBI Images of Active Galactic Nuclei at Different Frequencies
- Radio Circular Polarization Produced in Helical Magnetic Fields in Eight Active Galactic Nuclei
- Structure of Magnetic Tower Jets in Stratified Atmospheres
- Multifrequency Polarimetry of the Nrao 140 Jet: Possible Detection of a Helical Magnetic Field and Constraints on its Pitch Angle
- Dynamic confinement of jets by magneto-torsional oscillations
Cited by in corpus (23)
- Solar science with the Atacama Large Millimeter/submillimeter Array - A new view of our Sun
- Magnetic Fields in Astrophysical Jets: From Launch to Termination
- Faraday rotation in the jet of M87 inside the Bondi radius: indication of winds from hot accretion flows confining the relativistic jet
- Are Spine--Sheath Polarization Structures in the Jets of Active Galactic Nuclei Associated with Helical Magnetic Fields?
- Reading M87's DNA: A Double Helix revealing a large scale Helical Magnetic Field
- Transverse Faraday-Rotation Gradients Across the Jets of 15 Active Galactic Nuclei
- A study of broadband Faraday rotation and polarization behaviour over 1.3--10 GHz in 36 discrete radio sources
- Parsec-scale Faraday rotation and polarization of 20 active galactic nuclei jets
- Parsec Scale Faraday-Rotation Structure Across the Jets of 9 Active Galactic Nuclei
- Dominance of outflowing electric currents on decaparsec to kiloparsec scales in extragalactic jets
- Revealing the Nature of Blazar Radio Cores through Multi-Frequency Polarization Observations with the Korean VLBI Network
- The Jets of AGN as giant co-axial cables
- Resolving the rotation measure of the M87 jet on kilo-parsec scales
- The Spiderweb proto-cluster is being magnetized by its central radio jet
- Interpreting the time variable RM observed in the core region of the TeV blazar Mrk 421
- Evidence for a Toroidal Magnetic-Field Component in 5C4.114 on Kiloparsec Scales
- High resolution VLBI polarisation imaging of AGN with the Maximum Entropy Method
- 18-22 cm VLBA Faraday rotation studies of six AGN jets
- Observational signatures of magnetic field structure in relativistic AGN jets
- Helical Magnetic Field in a Massive Protostellar Jet
- Using bootstrap to assess uncertainties of VLBI results I. The method and image-based errors
- Counter-rotation in relativistic magnetohydrodynamic jets
- Depolarization and Faraday effects in AGN Jets