The Formation of Galactic Magnetic Fields

Astronomy and Astrophysics – Astronomy

Scientific paper

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Scientific paper

The Galactic magnetic field has an energy density comparable to that of interstellar medium turbulence and a coherence exceeding 1000 parsecs. We will discuss possible scenarios for its formation by a helical or nonhelical turbulent dynamo. The nature of forced MHD turbulence, the magnetic analogue of the Kolmogorov cascade for hydrodynamic turbulence, plays a key role. Our chief results are that turbulence without a coherent kinetic helicity can generate large energy but not large scale magnetic fields. The magnetic energy peak approaches the resistive scale in the long-term steady state. However, we find that turbulence with a coherent kinetic helicity, such as can arise from Galactic rotation and density stratification, is a good candidate for generating the coherent large scale magnetic fields within a Hubble time. Even though the magnetic resistivity is so small so as to enforce magnetic helicity conservation, Galactic-scale magnetic helicity can be generated by exchanging magnetic helicity between the Galactic and the supernova forcing scale. Before the build-up of small scale current helicity quenches the field growth, significant large scale Galactic fields have already been generated. Funded by the DOE and the NSF.

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