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DUO - the Dark Universe Observatory

机译:DUO-黑暗宇宙天文台

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Dark Energy dominates the mass-energy content of the universe (about 73%) but we do not understand it. Most of the remainder of the Universe consists of Dark Matter (23%), made of an unknown particle. The problem of the origin of Dark Energy has become the biggest problem in astrophysics and one of the biggest problems in all of science. The major extant X-ray observatories, the Chandra X-ray Observatory and XMM-Newton, do not have the ability to perform large-area surveys of the sky. But Dark Energy is smoothly distributed throughout the universe and the whole universe is needed to study it. There are two basic methods to explore the properties of Dark Energy, viz. geometrical tests (supernovae) and studies of the way in which Dark Energy has influenced the large scale structure of the universe and its evolution. DUO will use the latter method, employing the copious X-ray emission from clusters of galaxies. Clusters of galaxies offer an ideal probe of cosmology because they are the best tracers of Dark Matter and their distribution on very large scales is dominated by the Dark Energy. In order to take the next step in understanding Dark Energy, viz. the measurement of the 'equation of state' parameter 'w', an X-ray telescope following the design of ABRTXAS will be accommodated into a Small Explorer mission in low-earth orbit. The telescope will perform a scan of 6,000 sq. degs. in the area of sky covered by the Sloan Digital Sky Survey (North), together with a deeper, smaller survey in the Southern hemisphere. DUO will detect 10.000 clusters of galaxies, measure the number density of clusters as a function of cosmic time, and the power spectrum of density fluctuations out to a redshift exceeding one. When combined with the spectrum of density fluctuations in the Cosmic Microwave Background from a redshift of 1100, this will provide a powerful lever arm for the crucial measurement of cosmological parameters.
机译:暗能量主导着宇宙的质量能含量(约占73%),但我们不了解。宇宙的其余大部分由暗物质组成(占暗物质的23%)。暗能量起源的问题已成为天体物理学中最大的问题,也是整个科学领域中最大的问题之一。现有的主要X射线观测站Chandra X射线观测站和XMM-Newton无法进行大范围的天空测量。但是黑暗能量在整个宇宙中是平稳分布的,需要研究整个宇宙。有两种基本方法可以探索暗能量的特性,即。几何测试(超新星)和暗能量影响宇宙的大规模结构及其演化的方式的研究。 DUO将使用后一种方法,采用从银河星团簇中产生的大量X射线发射。星系团簇是宇宙学的理想探测器,因为它们是暗物质的最佳示踪剂,并且它们在很大范围内的分布主要由暗能量主导。为了下一步了解黑暗能量,即。在“状态方程”参数“ w”的测量中,遵循ABRTXAS设计的X射线望远镜将被安装到低地球轨道的小型探索者任务中。望远镜将扫描6,000平方度。斯隆(Sloan)数字天空调查(北部)所覆盖的天空区域,以及南半球的更深,更小的调查。 DUO将探测10.000个星系团,并根据宇宙时间测量星团的密度,并且密度波动的功率谱超过一个红移。与1100的红移引起的宇宙微波背景中密度波动的光谱结合使用时,它将为重要的宇宙学参数测量提供强大的杠杆臂。

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