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Could GR contextuality resolve the missing mass problem?

机译:可以解决缺失的批量问题吗?

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摘要

In Newtonian gravity, mass is an intrinsic property of matter, while in general relativity (GR), mass is a contextual property of matter, e.g. when two different GR spacetimes are adjoined. Herein, we explore the possibility that the astrophysical missing mass attributed to nonbaryonic dark matter (DM) actually obtains because we have been assuming the Newtonian intrinsic view of mass rather than the GR contextual view. Perhaps we should model astrophysical phenomena via combined GR spacetimes to better account for their complexity. Accordingly, we consider a GR ansatz in fitting galactic rotation curve data (THINGS), X-ray cluster mass profile data (ROSAT/ASCA), and CMB angular power spectrum data (Planck 2015) without DM. We find that our fits compare well with both modified gravity programs and DM programs.
机译:在牛顿重力中,质量是物质的内在特性,而在一般相对性(GR)中,质量是物质的语境特性,例如, 当两个不同的GR时刻相邻时。 在此,我们探讨了归因于非孪生暗物质(DM)的天体物理缺失质量实际获得,因为我们已经假设牛顿的质量内在视图而不是GR语境观点。 也许我们应该通过组合的GR Spacetime模拟天体物理现象,以更好地占他们的复杂性。 因此,我们考虑拟合银河旋转曲线数据(物),X射线簇质量型材数据(ROSAT / ASCA)和CMB角动力频谱数据(FLACCK 2015)的GR ANSATZ,而没有DM。 我们发现我们的配合与修改的重力计划和DM程序相比很好。

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