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首页> 外文期刊>Astronomische Nachrichten: A Journal on all Fields of Astronomy >Lessons learned from 19 years of high-resolution X-ray spectroscopy of galaxy clusters with the reflection grating spectrometer on board XMM-Newton
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Lessons learned from 19 years of high-resolution X-ray spectroscopy of galaxy clusters with the reflection grating spectrometer on board XMM-Newton

机译:从19年的Galaxy集群高分辨率X射线光谱从XMM-Newton的反射光栅光谱仪提供经验教训

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摘要

The intracluster medium (ICM) contains the vast majority of the baryonic matter in galaxy clusters and is heated to X-ray radiating temperatures. X-ray spectroscopy is therefore a key to understanding both the morphology and the dynamics of galaxy clusters. Here we recall crucial evolutionary problems of galaxy clusters unveiled by 19 years of high-resolution X-ray spectroscopy with the reflection grating spectrometer (RGS) on board XMM-Newton. Its exquisite combination of effective area, spectral resolution, and excellent performance over two decades has enabled transformational science and important discoveries such as the lack of strong cooling flows, the constraints on ICM turbulence, and cooling-heating balance. The ability of RGS to resolve individual ICM spectral lines reveals in great detail the chemical enrichment in clusters by supernovae and asymptotic giant branch stars. RGS spectra clearly show that the ICM plasma is overall in thermal equilibrium, which is unexpected given the wealth of energetic phenomena such as jets from supermassive black holes and mergers.
机译:内部介质(ICM)含有绝大多数在星系簇中的焦结物质,并加热到X射线辐射温度。因此,X射线光谱是理解Galaxy集群形态和动态的关键。在这里,我们回顾19年高分辨率X射线光谱与XMM-Newton的反射光谱光谱仪(RGS)推出的Galaxy Clusters的关键进化问题。其精致的有效面积,光谱分辨率和两十年来的优异性能组合,使得变革科学和重要的发现,例如缺乏强大的冷却流量,对ICM湍流的限制以及冷却加热平衡。 RGS解决个体ICM光谱线的能力在于Supernovae和渐近巨型分支星的聚类中的化学富集。 RGS光谱清楚地表明,ICM等离子体总体在热平衡中,这是意外的,因为诸如超级分类黑洞和兼并的喷气机等大量能量现象。

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