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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Statistical properties of scale-invariant helical magnetic fields and applications to cosmology
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Statistical properties of scale-invariant helical magnetic fields and applications to cosmology

机译:尺度不变螺旋磁场和宇宙学应用的统计特性

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We investigate the statistical properties of isotropic, stochastic, Gaussian distributed, helical magnetic fields characterized by different shapes of the energy spectra at large length scales and study the associated realizability condition. We discuss smoothed magnetic fields that are commonly used when the primordial magnetic field is constrained by observational data. We are particularly interested in scale-invariant magnetic fields that can be generated during the inflationary stage by quantum fluctuations. We determine the correlation length of such magnetic fields and relate it to the infrared cutoff of perturbations produced during inflation. We show that this scale determines the observational signatures of the inflationary magnetic fields on the cosmic microwave background. At smaller scales, the scale-invariant spectrum changes with time. It becomes a steeper weak-turbulence spectrum at progressively larger scales. We show numerically that the critical length scale where this happens is the turbulent-diffusive scale, which increases with the square root of time.
机译:我们调查各向同性,随机,高斯分布的螺旋磁场的统计性质,其特征在于大长度尺度的不同形状的不同形状,并研究相关的可实现性条件。我们讨论通常使用当原始磁场受到观察数据的限制时通常使用的平滑磁场。我们对尺度不变的磁场特别感兴趣,这些磁场可以通过量子波动在通胀阶段产生。我们确定这种磁场的相关长度,并将其涉及在膨胀期间产生的扰动的红外截止。我们表明,该规模决定了宇宙微波背景上的通胀磁场的观察特征。在较小的尺度下,比例不变频谱随时间而变化。它成为逐步较大的尺度较陡峭的弱湍流频谱。我们在数值上显示出这种情况发生的临界长度尺度是湍流漫射量表,这随着时间的平方根而增加。

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