Growth of magnetic field in a two-component plasma

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Neutrino Interactions, Magnetohydrodynamics And Plasmas, Origin, Formation, And Abundances Of The Elements, Magnetized Plasmas

Scientific paper

We study the electromagnetic properties of a system that consists of an electron background and a neutrino gas that may be moving or at rest, as a whole, relative to the background. The photon self-energy for this system is characterized by the usual transverse and longitudinal polarization functions, and two additional ones which are the focus of our calculations, that give rise to birefringence and anisotropic effects in the photon dispersion relations. We consider the macroscopic electrodynamic equations for the above system, and discuss the evolution of a magnetic field perturbation in such a medium. This particular phenomena has also been considered by others as a mechanism for the generation of large-scale magnetic fields in the Early Universe as a consequence of the neutrino-plasma interactions.

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