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Reconstructing the Nature of the First Cosmic Sources from the Anisotropic 21-cm Signal

机译:从21厘米各向异性信号重建第一个宇宙源的性质

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The redshifted 21-cm background is expected to be a powerful probe of the early Universe, carrying both cosmological and astrophysical information from a wide range of redshifts. In particular, the power spectrum of fluctuations in the 21-cm brightness temperature is anisotropic due to the line-of-sight velocity gradient, which in principle allows for a simple extraction of this information in the limit of linear fluctuations. However, recent numerical studies suggest that the 21-cm signal is actually rather complex, and its analysis likely depends on detailed model fitting. We present the first realistic simulation of the anisotropic 21-cm power spectrum over a wide period of early cosmic history. We show that on observable scales, the anisotropy is large and thus measurable at most redshifts, and its form tracks the evolution of 21-cm fluctuations as they are produced early on by Lyman-α radiation from stars, then switch to x-ray radiation from early heating sources, and finally to ionizing radiation from stars. In particular, we predict a redshift window during cosmic heating (at z ~ 15), when the anisotropy is small, during which the shape of the 21-cm power spectrum on large scales is determined directly by the average radial distribution of the flux from x-ray sources. This makes possible a model-independent reconstruction of the x-ray spectrum of the earliest sources of cosmic heating.
机译:红移的21厘米背景有望成为对早期宇宙的有力探测,它携带来自各种红移的宇宙学和天体物理学信息。尤其是,由于视线速度梯度,在21厘米亮度温度下波动的功率谱是各向异性的,从原理上讲,它可以在线性波动的范围内简单地提取此信息。但是,最近的数值研究表明21厘米信号实际上相当复杂,其分析可能取决于详细的模型拟合。我们提出了在宽广的宇宙早期历史中对各向异性21厘米功率谱的首次现实模拟。我们表明,在可观测的尺度上,各向异性很大,因此在大多数红移情况下都是可以测量的,并且它的形式跟踪了21厘米起伏的演变,因为它们是由恒星的莱曼-α辐射在早期产生的,然后转换为X射线从早期的热源,最后到恒星的电离辐射。特别是,我们预测了在宇宙加热期间(z〜15时)的红移窗口,当各向异性较小时,在此期间大范围的21 cm功率谱的形状直接取决于通量的平均径向分布。 X射线源。这使得最早的宇宙加热源的X射线光谱的模型无关重建成为可能。

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