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Constraints on Dark Energy Models from Galaxy Clusters and Gravitational Lensing Data

机译:银河星团和引力透镜数据对暗能量模型的约束

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The Sunyaev–Zel’dovich (SZ) effect is a global distortion of the Cosmic Microwave Background (CMB) spectrum as a result of its interaction with a hot electron plasma in the intracluster medium of large structures gravitationally viralized such as galaxy clusters (GC). Furthermore, this hot gas of electrons emits X-rays due to its fall in the gravitational potential well of the GC. The analysis of SZ and X-ray data provides a method for calculating distances to GC at high redshifts. On the other hand, many galaxies and GC produce a Strong Gravitational Lens (SGL) effect, which has become a useful astrophysical tool for cosmology. We use these cosmological tests in addition to more traditional ones to constrain some alternative dark energy (DE) models, including the study of the history of cosmological expansion through the cosmographic parameters. Using Akaike and Bayesian Information Criterion, we find that the w C D M and Λ C D M models are the most favoured by the observational data. In addition, we found at low redshift a peculiar behavior of slowdown of the universe, which occurs in dynamical DE models when we use data from GC.
机译:Sunyaev–Zel'dovich(SZ)效应是宇宙微波本底(CMB)光谱的整体畸变,这是因为它与在重力作用下振动的大型结构(例如星系团(GC))的簇内介质中的热电子等离子体相互作用。此外,这种热的电子气体由于掉入GC的重力势阱而发出X射线。对SZ和X射线数据的分析提供了一种在高红移下计算距GC距离的方法。另一方面,许多星系和GC都会产生强引力透镜(SGL)效应,这已成为宇宙学有用的天体物理学工具。除了更传统的测试以外,我们还使用这些宇宙学测试来约束某些替代的暗能量(DE)模型,包括通过宇宙学参数研究宇宙学膨胀的历史。使用Akaike和贝叶斯信息准则,我们发现w C D M和ΛC D M模型最受观测数据青睐。此外,我们发现在低红移下,宇宙的减速行为是特殊的,当我们使用来自GC的数据时,这会发生在动态DE模型中。

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