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Probing the Origins of Voids in the Distribution of Galaxies

机译:探索星系分布中空洞的起源

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摘要

If the voids that we see today in the distribution of galaxies existed at recombination, they will leave an imprint on the cosmic microwave background (CMB). On the other hand, if these voids formed much later, their effect on the CMB will be negligible and will not be observed with the current generation of experiments. In this paper, presented at the 2004 Annual Scientific Meeting of the Astronomical Society of Australia, we discuss our ongoing investigations into voids of primordial origin. We show that if voids in the cold dark matter distribution existed at the epoch of decoupling, they could contribute significantly to the apparent rise in CMB power on small scales detected by the Cosmic Background Imager (CBI) Deep Field. Here we present our improved method for predicting the effects of primordial voids on the CMB in which we treat a void as an external source in the cold dark matter (CDM) distribution employing a Boltzmann solver. Our improved predictions include the effects of a cosmological constant (Λ) and acoustic oscillations generated by voids at early times. We find that models with relatively large voids on the last scattering surface predict too much CMB power in an Einstein–de Sitter background cosmology but could be consistent with the current CMB observations in a ΛCDM universe
机译:如果我们今天在星系分布中看到的空隙在重组时存在,它们将在宇宙微波背景(CMB)上留下印记。另一方面,如果这些空隙形成得较晚,则它们对CMB的影响可以忽略不计,并且在当前的实验中将无法观察到。在澳大利亚天文学会2004年度科学会议上发表的这篇论文中,我们讨论了我们对原始起源空隙的持续研究。我们表明,如果在去耦合时期存在冷暗物质分布中的空隙,则在宇宙背景成像仪(CBI)深场探测到的小规模尺度上,它们可能会极大地促进CMB功率的明显上升。在这里,我们介绍了一种用于预测原始空隙对CMB的影响的改进方法,在该方法中,我们使用Boltzmann求解器将空隙作为冷暗物质(CDM)分布中的外部源。我们改进的预测包括宇宙常数(Λ)的影响以及早期空洞产生的声波振荡。我们发现,在最后一个散射表面上具有相对较大空隙的模型在爱因斯坦德西特背景宇宙学中预测了太多的CMB能力,但可能与ΛCDM宇宙中当前的CMB观测结果一致

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