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Primordial Magnetic Field Effects on the CMB and Large-Scale Structure

机译:原始磁场对CMB和大型结构的影响

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Magnetic fields are everywhere in nature, and they play an important role in every astronomical environment which involves the formation of plasma and currents. It is natural therefore to suppose that magnetic fields could be present in the turbulent high-temperature environment of the big bang. Such a primordial magnetic field (PMF) would be expected to manifest itself in the cosmic microwave background (CMB) temperature and polarization anisotropies, and also in the formation of large-scale structure. In this paper, we summarize the theoretical framework which we have developed to calculate the PMF power spectrum to high precision. Using this formulation, we summarize calculations of the effects of a PMF which take accurate quantitative account of the time evolution of the cutoff scale. We review the constructed numerical program, which is without approximation, and an improvement over the approach used in a number of previous works for studying the effect of the PMF on the cosmological perturbations. We demonstrate how the PMF is an important cosmological physical process on small scales. We also summarize the current constraints on the PMF amplitudeBλand the power spectral indexnBwhich have been deduced from the available CMB observational data by using our computational framework.
机译:磁场在自然界中无处不在,它们在涉及等离子体和电流形成的每个天文环境中都起着重要作用。因此,很自然地假设在大爆炸的湍流高温环境中可能会存在磁场。这样的原始磁场(PMF)有望在宇宙微波背景(CMB)温度和极化各向异性以及大规模结构的形成中表现出来。在本文中,我们总结了为高精度计算PMF功率谱而开发的理论框架。使用这种公式,我们总结了PMF效应的计算,其中精确地考虑了截止尺度的时间演变。我们回顾了所构建的数值程序,它没有近似值,并且是对先前许多研究PMF对宇宙扰动影响的工作中使用的方法的改进。我们演示了PMF如何在小规模上是重要的宇宙物理过程。我们还总结了通过使用我们的计算框架从可用的CMB观测数据推导出的对PMF振幅Bλ和功率谱指数nB的当前约束。

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