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New comprehensive description of the scaling evolution of the cosmological magneto-hydrodynamic system

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arxiv 2405.06194 v2 pith:HGVOHVBA submitted 2024-05-10 astro-ph.CO hep-phphysics.flu-dyn

classification astro-ph.COhep-phphysics.flu-dyn
keywords magneticdissipationevolutionwhetherconstraintsdescriptiondominantenergy
verification ladder T0 review T1 audit T2 compute T3 formal
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We study the evolution of primordial magnetic fields until the recombination epoch, which is constrained by the conservation of magnetic helicity density if they are maximally helical and by the Hosking integral if they are non-helical. We combine these constraints with conditions obtained by estimating time scales of energy dissipation processes to describe the evolution of magnetic field strength and magnetic coherence length analytically. The dissipation processes depend on whether magnetic or kinetic energy is dominant, whether the decay dynamics is linear or not, and whether the dominant dissipation term is shear viscosity or drag force. We apply the description to compare constraints on primordial magnetic fields at different epochs in the early universe and argue that magnetogenesis before the electroweak symmetry breaking is not feasible.

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  1. Revisiting constraints on magnetogenesis from baryon asymmetry

    hep-ph 2025-09 unverdicted novelty 5.0 of 10

    Maximally helical primordial U(1)_Y magnetic fields can generate both intergalactic magnetic fields and baryon asymmetry; non-helical fields may work if Higgs dynamics compensate helicity loss to ≲10^{-9-10} precision...

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