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Accelerated expansion of the universe and chasing photons from the CMB to study the late time integrated Sachs-Wolfe effect over different redshift ranges

机译:加速扩大宇宙,从CMB追逐光子,以研究不同的红移范围内的延迟综合Sachs-Wolfe效应

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摘要

.In this study, we are going to discuss the accelerated expansion of the universe and how this accelerated expansion affects the paths of photons from cosmic microwave background (CMB) radiation. Then we will see how wide-field galaxy surveys along with cosmic CMB anisotropy maps can help us in studying dark energy. The cross-correlation of galaxy over/under-density maps with CMB anisotropy maps help us in measuring one of the most useful signatures of dark energy, i.e. integrated Sachs-Wolfe (ISW) effect. The ISW effect explains the blue-shifting and red-shifting of CMB photons when they reach to us after passing through large scale structures and super-voids, respectively. We will look into the theoretical foundations behind the ISW effect and discuss how modern all-sky galaxy surveys, like EMU-ASKAP, will be useful in studying the effect over different redshift ranges.
机译:在这项研究中,我们将讨论宇宙的加速扩张以及这种加速扩张如何影响来自宇宙微波背景(CMB)辐射的光子的路径。 然后我们将看到宽场的Galaxy调查以及宇宙CMB各向异性地图如何帮助我们研究黑暗能量。 与CMB各向异性地图的星系过/欠密度图的互相关有助于我们测量暗能量最有用的签名之一,即集成的Sachs-Wolfe(ISW)效果。 ISW效应分别在通过大规模结构和超空隙之后向我们达到我们时,分别介绍了CMB光子的蓝色移位和红色移位。 我们将研究isW效果背后的理论基础,并讨论现代全天的星系调查,如鸸andap,在研究对不同红移范围内的影响。

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