English

Origin of strong magnetic fields in Milky-Way like galactic haloes

Cosmology and Nongalactic Astrophysics 2015-06-04 v1 Astrophysics of Galaxies

Abstract

An analytical model predicting the growth rates, the absolute growth times and the saturation values of the magnetic field strength within galactic haloes is presented. The analytical results are compared to cosmological MHD simulations of Milky-Way like galactic halo formation performed with the N-body / \textsc{Spmhd} code \textsc{Gadget}. The halo has a mass of 31012\approx{}3\cdot{}10^{12} MM_{\odot} and a virial radius of \approx{}270 kpc. The simulations in a Λ\LambdaCDM cosmology also include radiative cooling, star formation, supernova feedback and the description of non-ideal MHD. A primordial magnetic seed field ranging from 101010^{-10} to 103410^{-34} G in strength agglomerates together with the gas within filaments and protohaloes. There, it is amplified within a couple of hundred million years up to equipartition with the corresponding turbulent energy. The magnetic field strength increases by turbulent small-scale dynamo action. The turbulence is generated by the gravitational collapse and by supernova feedback. Subsequently, a series of halo mergers leads to shock waves and amplification processes magnetizing the surrounding gas within a few billion years. At first, the magnetic energy grows on small scales and then self-organizes to larger scales. Magnetic field strengths of 106\approx{}10^{-6} G are reached in the center of the halo and drop to 109\approx{}10^{-9} G in the IGM. Analyzing the saturation levels and growth rates, the model is able to describe the process of magnetic amplification notably well and confirms the results of the simulations.

Keywords

Cite

@article{arxiv.1202.3349,
  title  = {Origin of strong magnetic fields in Milky-Way like galactic haloes},
  author = {Alexander M. Beck and Harald Lesch and Klaus Dolag and Hanna Kotarba and Annette Geng and Federico A. Stasyszyn},
  journal= {arXiv preprint arXiv:1202.3349},
  year   = {2015}
}

Comments

13 pages, 12 figures, accepted to MNRAS after minor revision