Constraints on magnetic field strength in the remnant SN1006 from its nonthermal images
arXiv:1109.0831 · doi:10.1111/j.1365-2966.2011.19722.x
Abstract
Images of SN1006 have a number of important properties. For instance, the bright limbs coincide spatially in various bands, they have different brightness, and the contrast of brightness varies from radio to gamma-rays. The reasons of such properties and the role of the magnetic field strength are discussed. Simple, almost model-independent methods and analytical approximations for the derivation of the strength of magnetic field from the comparison of radio, X-rays and TeV images of SNR are presented. The methods require the TeV image to be well resolved and accurate, at least to the level of the radio and X-ray maps, in order to put reasonable constraints on magnetic field. If we apply it to the present HESS data, they limit the strength of magnetic field in limbs of SN1006 to values lower than few hundreds micro Gauss. If applied to the Fermi-LAT band, the model predicts same position and same ratio of the surface brightness for GeV photons as for the radio band. We conclude that TeV and GeV future high-resolution data may be very informative about the MF of SN1006.
6 pages, 3 figure, to be published in MNRAS
References in corpus (6)
- Analytical solutions for energy spectra of electrons accelerated by nonrelativistic shock-waves in shell type supernova remnants
- First detection of VHE gamma-rays from SN 1006 by H.E.S.S
- Confirmation of strong magnetic field amplification and nuclear cosmic ray acceleration in SN 1006
- Aspect angle for interstellar magnetic field in SN 1006
- Some properties of synchrotron radio and inverse-Compton gamma-ray images of supernova remnants
- Artificial broadening of the high-energy end of electron spectrum in supernova remnants
Cited by in corpus (3)
- On the Radio Polarization Signature of Efficient and Inefficient Particle Acceleration in Supernova Remnant SN 1006
- Role of ejecta clumping and back-reaction of accelerated cosmic rays in the evolution of Type Ia supernova remnants
- Radio polarization maps of shell-type SNRs II. Sedov models with evolution of turbulent magnetic field