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The Science Goals of the Constellation-X Mission

机译:星座X任务的科学目标

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The Constellation-X mission will address the questions: "What happens to matter close to a black hole?" and "What is Dark Energy?" These questions are central to the NASA Beyond Einstein Program, where Constellation-X plays a central role. The mission will address these questions by using high throughput X-ray spectroscopy to observe the effects of strong gravity close to the event horizon of black holes, and to observe the formation and evolution of clusters of galaxies in order to precisely determine Cosmo logical parameters. To achieve these primary science goals requires a factor of 25-100 increase in sensitivity for high resolution spectroscopy. The mission will also perform routine high-resolution X-ray spectroscopy of faint and extended X-ray source populations. This will provide diagnostic information such as density, elemental abundances, velocity, and ionization state for a wide range of astrophysical problems. This has enormous potential for the discovery of new unexpected phenomena. The Constellation-X mission is a high priority in the National Academy of Sciences McKee-Taylor Astronomy and Astrophysics Survey of new Astrophysics Facilities for the first decade of the 21st century.
机译:Constellation-X任务将解决以下问题:“在黑洞附近发生了什么事情?”和“什么是暗能量?”这些问题对于美国国家航空航天局超越爱因斯坦计划至关重要,而Constellation-X在其中扮演着重要角色。该任务将通过使用高通量X射线光谱学来解决这些问题,以观察靠近黑洞事件视界的强引力的影响,并观察星系团的形成和演化,以便精确确定宇宙逻辑参数。为了实现这些主要的科学目标,高分辨率光谱的灵敏度需要提高25-100倍。该特派团还将对微弱和扩展的X射线源群执行常规的高分辨率X射线光谱分析。这将为各种天体物理问题提供诊断信息,例如密度,元素丰度,速度和电离状态。这对于发现新的意外现象具有巨大的潜力。在美国国家科学院McKee-Taylor天文学与天体物理学对21世纪前十年的新天体物理学设施的调查中,Constellation-X任务是当务之急。

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