Scaling laws in decaying helical hydromagnetic turbulence

Abstract

We study the evolution of growth and decay laws for the magnetic field coherence length xi, energy EM and magnetic helicity H in freely decaying 3D MHD turbulence. We show that with certain assumptions, self-similarity of the magnetic power spectrum alone implies that xi~t1/2. This in turn implies that magnetic helicity decays as H~t-2s, where s=(xidiff/xiH)2, in terms of xidiff, the diffusion length scale, and xiH, a length scale defined from the helicity power spectrum. The relative magnetic helicity remains constant, implying that the magnetic energy decays as EM~t-1/2-2s. The parameter s is inversely proportional to the magnetic Reynolds number ReM, which is constant in the self-similar regime.

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