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首页> 外文期刊>The Astrophysical journal >A NOVEL APPROACH TO CONSTRAIN THE ESCAPE FRACTION AND DUST CONTENT AT HIGH REDSHIFT USING THE COSMIC INFRARED BACKGROUND FRACTIONAL ANISOTROPY
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A NOVEL APPROACH TO CONSTRAIN THE ESCAPE FRACTION AND DUST CONTENT AT HIGH REDSHIFT USING THE COSMIC INFRARED BACKGROUND FRACTIONAL ANISOTROPY

机译:利用宇宙红外背景分形各向异性以高折光率约束逃逸分数和粉尘含量的新方法

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The Cosmic Infrared Background (CIB) provides an opportunity to constrain many properties of the high-redshift (z 6) stellar population as a whole. This background, specifically from 1 to 200 μm, should contain information about the era of reionization and the stars that are responsible for these ionizing photons. In this paper, we look at the fractional anisotropy (δI/I) of this high-redshift population, where δI is the ratio of the magnitude of the fluctuations and I is the mean intensity. We show that this can be used to constrain the escape fraction of the population as a whole, because the magnitude of the fluctuations of the CIB depends on the escape fraction, while the mean intensity does not. This results in lower values of the escape fraction producing higher values of the fractional anisotropy. This difference is predicted to be larger at longer wavelength bands (above 10 μm), albeit it is also much harder to observe in that range. We show that the fractional anisotropy can also be used to separate a dusty from a dust-free population. Finally, we discuss the constraints provided by current observations on the CIB fractional anisotropy.
机译:宇宙红外背景(CIB)提供了一个机会来限制整个高红移(z> 6)恒星群体的许多属性。此背景(特别是1到200μm)应包含有关电离时代和造成这些电离光子的恒星的信息。在本文中,我们研究了这个高红移种群的分数各向异性(δI/ I),其中δI是波动幅度的比率,I是平均强度。我们表明,这可以用来约束总体上的逃逸率,因为CIB波动的幅度取决于逃逸率,而平均强度则不然。这导致较低的逸出分数值产生较高的分数各向异性值。预计在更长的波段(大于10μm)处,该差异会更大,尽管在该范围内也很难观察到。我们表明,分数各向异性也可以用于从无尘种群中分离出尘土。最后,我们讨论了当前对CIB分数各向异性的观察所提供的约束。

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