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首页> 外文期刊>The Astrophysical journal >Lensing Effects on Gravitational Waves in a Clumpy Universe: Effects of Inhomogeneity on the Distance-Redshift Relation
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Lensing Effects on Gravitational Waves in a Clumpy Universe: Effects of Inhomogeneity on the Distance-Redshift Relation

机译:笨拙宇宙中引力波的透镜效应:不均匀性对距离-红移关系的影响

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The distance-redshift relation determined by means of gravitational waves in the clumpy universe is simulated numerically by taking into account the effects of gravitational lensing. It is assumed that all of the matter in the universe takes the form of randomly distributed point masses, each of which has the identical mass ML. Calculations are carried out in two extreme cases, λ GML/c2 and λ GML/c2, where λ denotes the wavelength of gravitational waves. In the first case, the distance-redshift relation for the fully homogeneous and isotropic universe is reproduced with a small distance dispersion, whereas in the second case, the distance dispersion is larger. This result suggests that we might obtain information about the typical mass of lens objects through the distance-redshift relation gleaned through observation of gravitational waves of various wavelengths. In this paper, we show how to set limitations on the mass ML through the observation of gravitational waves in the clumpy universe model described above.
机译:考虑到引力透镜效应,数值模拟了块状宇宙中借助引力波确定的距离-红移关系。假定宇宙中的所有物质都采取随机分布的点质量的形式,每个点质量都相同。在两种极端情况下进行计算:λGML / c2和λGML / c2,其中λ表示重力波的波长。在第一种情况下,完全均匀且各向同性的宇宙的距离-红移关系以较小的距离离散来再现,而在第二种情况下,距离离散较大。这个结果表明,我们可以通过观察各种波长的引力波收集到的距离-红移关系来获得有关镜头物体典型质量的信息。在本文中,我们展示了如何通过观察上述块状宇宙模型中的引力波来设置质量ML的限制。

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