The magnetic field of M 31 from multi-wavelength radio polarization observations
نویسندگان
چکیده
The configuration of the regular magnetic field in M 31 is deduced from radio polarization observations at the wavelengths λλ 6, 11 and 20 cm. By fitting the observed azimuthal distribution of polarization angles, we find that the regular magnetic field, averaged over scales 1–3kpc, is almost perfectly axisymmetric in the radial range 8 to 14 kpc, and follows a spiral pattern with pitch angles of p ' −19◦ to p ' −8◦. In the ring between 6 and 8 kpc a perturbation of the dominant axisymmetric mode may be present, having the azimuthal wave number m = 2. A systematic analysis of the observed depolarization allows us to identify the main mechanism for wavelength dependent depolarization – Faraday rotation measure gradients arising in a magneto-ionic screen above the synchrotron disk. Modelling of the depolarization leads to constraints on the relative scale heights of the thermal and synchrotron emitting layers in M31; the thermal layer is found to be up to three times thicker than the synchrotron disk. The regular magnetic field must be coherent over a vertical scale at least similar to the scale height of the thermal layer, estimated to be hth ' 1 kpc. Faraday effects offer a powerful method to detect thick magneto-ionic disks or halosaround spiral galaxies.
منابع مشابه
On a synthetical method to constrain 3-D structure of emission regions of pulsars
The main idea and procedure are presented for a new synthetical method on constraining 3-D structure of emission regions of pulsars. With this method the emission regions can be synthetically constrained by fitting multi-wavelength observations features, e.g. pulse widths, phase offsets between radio pulse profiles and high energy light curves, and radio polarization properties. The main techni...
متن کاملMulti-waveband Behavior of Blazars
The author reviews recent progress toward understanding blazars that multi-waveband monitoring observations have advanced. The primary techniques include the compilation of multi-waveband light curves, multi-epoch VLBI images at radio wavelengths, plots of linear polarization vs. time at radio through optical wavelengths, and spectral energy distributions (SEDs). Correlations and the coincidenc...
متن کاملHigh-Energy Polarization: Scientific Potential and Model Predictions
Understanding magnetic field strength and morphology is very important for studying astrophysical jets. Polarization signatures have been a standard way to probe the jet magnetic field. Radio and optical polarization monitoring programs have been very successful in studying the spaceand time-dependent jet polarization behaviors. A new era is now arriving with high-energy polarimetry. X-ray and ...
متن کاملA Full-Duplex, Dual-Polarization 10Gbps Radio over Fiber system with wavelength reuse for upstream signal
This study presents a full-duplex Radio-over-Fiber (RoF) system providing the users' wireless access with a bit rate of 10 Gbps over 40 GHz radio carrier. This system can be used in a centralized radio access network (C-RAN) architecture because we provide a fully analog front haul link between central station and base station. We can consider it as infrastructure between remote radio heads (RR...
متن کاملRadio spectral properties and the magnetic field of the SNR S 147 ⋆
Context. S147 is a large faint shell-type supernova remnant (SNR) known for its remarkable spectral break at cmwavelength, which is an important physical property to characterize SNR evolution. However, the spectral break is based on radio observations with limited precision. Aims. New sensitive observations at high frequencies are required for a detailed study of the spectral properties and th...
متن کامل