Constraining Dark Energy from the Local Group Dynamics

D. Benisty, A. Davis, N. W. Evans
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Abstract

This Letter develops a method to constrain the cosmological constant Λ from binary galaxies, focusing on the Milky Way and Andromeda galaxies. We provide an analytical solution to the two-body problem with Λ and show that the ratio between the Keplerian period and TΛ=2π/(cΛ)≈63.2Gyr controls the importance of effects from the cosmological constant. The Andromeda–Milky Way orbit has a period of ∼17 Gyr, and so dark energy has to be taken into account. Using the current best mass estimates of the Milky Way and Andromeda galaxies, we find the cosmological constant value has an upper bound that is 5.44 times the value obtained by Planck. With future astrometric measurements, the bound on the cosmological constant can be reduced to 1.67±0.79ΛPL . Our results offer the prospects of constraints on Λ over very different scales than previously. The Local Group provides also a completely novel platform to test alternative theories of gravity. We illustrate this by deriving bounds on scalar-tensor theories of gravity over megaparsec scales.
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局域群动力学对暗能量的约束
这封信开发了一种方法来约束宇宙常数Λ从双星系,重点是银河系和仙女座星系。我们用Λ给出了二体问题的解析解,并证明了开普勒周期与TΛ=2π/(cΛ)≈63.2Gyr的比值控制了宇宙学常数效应的重要性。仙女座-银河系的轨道周期为~ 17 Gyr,因此必须考虑暗能量。利用目前对银河系和仙女座星系的最佳质量估计,我们发现宇宙常数值的上限是普朗克得到的值的5.44倍。在未来的天文测量中,宇宙学常数的界限可以降低到1.67±0.79ΛPL。我们的研究结果提供了Λ在不同尺度上的约束前景。本地小组也提供了一个全新的平台来测试其他的重力理论。我们通过在百万秒差距尺度上推导引力的标量张量理论的界限来说明这一点。
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