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Future evolution of nearby large-scale structures in a universe dominated by a cosmological constant

机译:宇宙常数主导的宇宙中附近大型结构的未来演化

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We simulate the future evolution of the observed inhomogeneities in the local universe assuming that the global expansion rate is dominated by a cosmological constant. We find that within two Hubble times (~ 30 billion years) from the present epoch, large-scale structures will freeze in co-moving coordinates and the mass distribution of bound objects will stop evolving. The Local Group will get somewhat closer to the Virgo cluster in co-moving coordinates, but will be pulled away from the Virgo in physical coordinates due to the accelerated expansion of the Universe. In the distant future there will only be one massive galaxy within our event horizon, namely the merger product of the Andromeda and the Milky Way galaxies. All galaxies that are not gravitationally bound to the Local Group will recede away from us and eventually exit from our event horizon. More generally, we identify the critical interior overdensity above which a shell of matter around an object will remain bound to it at late times.
机译:假设全球膨胀率由宇宙常数决定,我们模拟了局部宇宙中观测到的不均匀性的未来演变。我们发现,在距现在的两个哈勃时间(约300亿年)内,大型结构将冻结在共同移动的坐标中,并且绑定对象的质量分布将停止演化。在共同移动的坐标中,本地组将稍微靠近处女座星团,但由于宇宙的加速扩展,它将在物理坐标上被拉离处女座。在遥远的未来,在我们的视线范围内将只有一个庞大的星系,即仙女座星系和银河系的合并产物。所有不受重力约束的星系都将远离我们,并最终脱离我们的视界。更笼统地说,我们确定了关键的内部密度,在该密度之上,物体周围的物质壳将在后期保持与物体的结合。

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