论文标题

星系簇中的径向加速关系

The radial acceleration relation in galaxy clusters

论文作者

Chan, Man Ho, Del Popolo, Antonino

论文摘要

最近,在星系中发现径向加速度关系(RAR)的发现被认为是对重力理论的间接支持,例如修饰的牛顿动力学(MOND)和修饰的重力。这种关系表明在不同大小和形态的星系中,动力学质量与男性质量之间存在密切的相关性。但是,如果RAR关系是与规模无关的,并且可以通过重力理论来解释,则这种关系也应该是普遍的,对于星系簇也应该是真实的。在本文中,通过使用星系簇样品的X射线数据,我们研究了银河系簇中的动态质量和男性质量之间是否存在紧密相关,假设热气体质量分布几乎代表了男性元分布,并且星系簇被病毒。我们表明,所得的52个非冷核星系簇的RAR散布在一个大参数空间中,这可能是由于我们简化了星系簇中的简化假设和不清楚的物质内容。这可能表明RAR不太可能是普遍的和与规模无关的。

Recently, the discovery of the radial acceleration relation (RAR) in galaxies has been regarded as an indirect support of alternative theories of gravity such as Modified Newtonian Dynamics (MOND) and modified gravity. This relation indicates a tight correlation between dynamical mass and baryonic mass in galaxies with different sizes and morphology. However, if the RAR relation is scale-independent and could be explained by alternative theories of gravity, this relation should be universal and true for galaxy clusters as well. In this article, by using the x-ray data of a sample of galaxy clusters, we investigate if there exists any tight correlation between dynamical mass and baryonic mass in galaxy clusters, assuming hot gas mass distribution almost representing baryonic distribution and that the galaxy clusters are virialized. We show that the resulting RAR of 52 non-cool-core galaxy clusters scatters in a large parameter space, possibly due to our simplifying assumptions and unclear matter content in galaxy clusters. This might indicate that the RAR is unlikely to be universal and scale-independent.

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