Analysis of differential observations of the cosmological radio background : studying the SZE-21cm

C. Takalana, S. Colafrancesco, P. Marchegiani
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Abstract

In pursuit of understanding the early Universe and early processes occurring particularly in the Dark Ages (DA) and the Epoch of Reionization (EoR), it is vital that a suitable probe is identified. Probing these epochs will be useful in studies of the origin of first galaxies and most importantly formation of early black-holes. Over the past decade numerous probes have been proposed, with one of the most promising being the SZE-21cm, a specific form of the Sunyaev-Zeldovich effect (SZE) produced when photons of the 21cm background are inverse Compton up-scattered by electrons residing in hot plasma of cosmic structures such as galaxy clusters and active radio galaxies. The SZE-21cm is calculated in a full relativistic approach of the scattering processes of the CMB photons modified by the cosmological redshifted 21cm background in the hot intra-cluster medium of galaxy clusters capturing effects induced by relativistic corrections to this scattering and by multiple scattering effects. We apply image differencing techniques to simulated radio observations of galaxy clusters using the redshifted 21cm background, we conduct this making use of the public semi-numeric code 21cmFAST. We are able to achieve subtraction of contaminating foregrounds through pixel by pixel operations on the data retrieved from our simulated data cubes. We demonstrate that SZE-21cm can be recovered through differential observations of the 21cm background.
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宇宙射电背景的差异观测分析:以SZE-21cm为例
为了了解早期宇宙和发生在黑暗时代(DA)和再电离时代(EoR)的早期过程,确定合适的探测器是至关重要的。探索这些时代将有助于研究第一个星系的起源,最重要的是早期黑洞的形成。在过去的十年里,人们提出了许多探测器,其中最有希望的是SZE-21cm,这是Sunyaev-Zeldovich效应(SZE)的一种特殊形式,当21cm背景的光子被宇宙结构(如星系团和活跃的射电星系)的热等离子体中的电子反向康普顿向上散射时,就会产生SZE-21cm效应。sse -21cm是用宇宙红移21cm背景修正的CMB光子在星系团的热星系团内介质中的散射过程的完全相对论方法计算的,捕获了对这种散射的相对论修正和多重散射效应引起的效应。我们应用图像差分技术,在红移21cm背景下模拟射电观测星系团,我们使用公共半数字代码21cmFAST进行这项研究。我们能够通过对从模拟数据立方中检索的数据进行逐像素操作来实现污染前景的减法。我们证明了SZE-21cm可以通过对21cm背景的差分观测来恢复。
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