Magnetic Fields in the Early Universe

K. Enqvist
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Abstract

The observed galactic magnetic fields may have a primordial origin. I briefly review the observations, their interpretation in terms of the dynamo theory, and the current limits on cosmological magnetic fields. Several possible mechanisms for generating a primordial magnetic field are then discussed. Turbulence and the evolution of the microscopic fields to macroscopic fields is described in terms of a shell model, which provides an approximation to the full magnetohydrodynamics and indicates the existence of an inverse cascade of magnetic energy. Cosmological seed fields roughly of the order of $10^{-20}$ G at the scale of protogalaxy, as required by the dynamo explanation of galactic magnetic fields, seem rather plausible.
早期宇宙中的磁场
观测到的星系磁场可能有一个原始的起源。我简要地回顾了这些观测,它们在发电机理论方面的解释,以及宇宙磁场的电流限制。然后讨论了产生原始磁场的几种可能机制。用一个壳模型描述了湍流和微观场向宏观场的演化,该模型提供了一个近似的完整磁流体动力学,并表明了磁能逆级联的存在。宇宙种子场在原星系尺度上大致为$10^{-20}$ G数量级,正如星系磁场的发电机解释所要求的那样,似乎是相当可信的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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