论文标题

在空间均匀的宇宙中,具有延迟各向异性

Spatially Homogeneous Universes with Late-Time Anisotropy

论文作者

Constantin, Andrei, Harvey, Thomas R., von Hausegger, Sebastian, Lukas, Andre

论文摘要

宇宙学原理断言,在足够大的规模上,宇宙是同质的,并且在空间切片上是各向同性的。要偏离这一原则,就需要与Flrw Ansatz离开。在本文中,我们分析了两个空间均匀但各向异性宇宙的宇宙学演化,即空间封闭的坎托夫斯基 - 萨奇斯宇宙和开放的轴对称性比安奇III型宇宙。这些模型的特征是两个比例因素,我们研究了它们在辐射,物质和宇宙常数的宇宙中的演变。在所有情况下,两个量表因素的发展都不同,并且这种各向异性在光的传播中产生镜头效应。我们为计算红移,角直径距离和亮度距离提供了明确的公式,并讨论了这些模型的预测与IA型超新星和CMB的观察有关。我们评论说,在宇宙学的背景下,以延迟各向异性和消失的宇宙常数为背景,可以解释IA型超新星的光度距离图。

The cosmological principle asserts that on sufficiently large scales the Universe is homogeneous and isotropic on spatial slices. To deviate from this principle requires a departure from the FLRW ansatz. In this paper we analyze the cosmological evolution of two spatially homogeneous but anisotropic universes, namely the spatially closed Kantowski-Sachs Universe and the open axisymmetric Bianchi type III Universe. These models are characterized by two scale factors and we study their evolution in universes with radiation, matter and a cosmological constant. In all cases, the two scale factors evolve differently and this anisotropy leads to a lensing effect in the propagation of light. We derive explicit formulae for computing redshifts, angular diameter distances and luminosity distances and discuss the predictions of these models in relation to observations for type Ia supernovae and the CMB. We comment on the possibility of explaining the observed luminosity distance plot for type Ia supernovae within the context of cosmologies featuring late-time anisotropy and a vanishing cosmological constant.

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