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Magnetohydrodynamics in the Early Universe and the Damping of Non-linear Alfven Waves

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arxiv astro-ph/9712083 v1 pith:EZVL6MDS submitted 1997-12-05 astro-ph

Magnetohydrodynamics in the Early Universe and the Damping of Non-linear Alfven Waves

classification astro-ph
keywords dampingalfvencosmicevolutionfieldmagneticuniverseearly
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The evolution and viscous damping of cosmic magnetic fields in the early universe, is analysed. Using the fact that the fluid, electromagnetic, and shear viscous energy-momentum tensors are all conformally invariant, the evolution is transformed from the expanding universe setting into that in flat spacetime. Particular attention is paid to the evolution of nonlinear Alfven modes. For a small enough magnetic field, which satisfies our observational constraints, these wave modes either oscillate negligibly or, when they do oscillate, become overdamped. Hence they do not suffer Silk damping on galactic and subgalactic scales. The smallest scale which survives damping depends on the field strength and is of order a dimensionless Alfven velocity times the usual baryon-photon Silk damping scale. After recombination, nonlinear effects can convert the Alfven mode into compressional, gravitationally unstable waves and seed cosmic structures if the cosmic magnetic field is sufficiently strong.

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Cited by 3 Pith papers

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  1. Effects of primordial magnetic fields on 21 cm multifrequency angular power spectra

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  2. JWST Constraints on Primordial Magnetic Fields

    astro-ph.CO 2026-04 unverdicted novelty 6.0

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  3. The art of simulating the early Universe. Part III: Scalar-Gauge-Fluid Dynamics

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