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Gravitational lensing properties of cosmological black holes

机译:宇宙黑洞的引力透镜特性

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If really such objects like cosmological black holes exist they may be studied with a standard technique like strong and weak gravitational lensing. Cosmological voids can be explained as the result the collapse of large perturbations into black hole with masses of the order of 10~(14)M_⊙ and the expansion of the universe. The resulting image of the universe is that it is more homogeneous than expected from present observations. In this paper we discuss some lensing properties related to the cosmological black holes (CBHs), namely we consider differences in gravitational lensing for point like mass and extended mass distributions. We consider the singular isothermal sphere model as a toy (illustrative) model for an extended distribution of dark matter and a slightly more complicated isothermal sphere with a core.
机译:如果真的这样的物体存在,则可以用一种标准技术来研究它们,如强大和弱的引力透镜。可以解释宇宙学空隙,因为结果将大型扰动崩溃到具有10〜(14)M_∞的大量的黑洞和宇宙的膨胀。所得到的宇宙图像是它比目前观察结果更加均匀。在本文中,我们讨论了与宇宙黑孔(CBHS)相关的一些镜头性质,即我们考虑重力透镜的差异,以获得像素,如质量和延伸的质量分布。我们将奇异等温球形模型视为一种玩具(说明性)模型,用于暗物质的延长分布和具有芯的稍微复杂的等温球体。

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