论文标题
一个可以治愈所有这些的范围:早期宇宙的签名解决了宇宙学的主要异常和紧张局势
One spectrum to cure them all: Signature from early Universe solves major anomalies and tensions in cosmology
论文作者
论文摘要
普朗克卫星观察到的宇宙微波背景(CMB)温度光谱中的声峰似乎比我们对标准模型透镜效应的期望更光滑。这种异常效应也可以通过空间封闭的宇宙模仿,其哈勃常数值非常低,从而加剧了宇宙学观察结果之间已经存在的不一致。我们从早期宇宙中重建一个签名,这是一种特征频率的量子波动的原始频谱中的特定形式,可以解决所有这些异常。有趣的是,我们发现这种原始光谱的这种形式可以解决或实质上消退,宇宙学标准模型中的各种紧张局势在适合不同的观察结果中,即普兰克CMB,聚类和弱透镜剪切测量来自多个大型结构调查的剪切剪切测量,最近估计了来自杂乱无章的局部测量,以及最近估计了来自Ellibal gloom gloom classe classers classers clussers clussers clusellarmular clussters。我们通过提出具有相似特征的原始光谱的分析形式来支持我们的发现,并证明它与宇宙学观察的各种组合非常吻合。从理论上讲,我们通过引入一种可以产生这种形式的原始光谱的通货膨胀的单个标量场潜力来进一步支持我们的发现。
Acoustic peaks in the Cosmic Microwave Background (CMB) temperature spectrum as observed by the Planck satellite appear to be smoother than our expectation from the standard model lensing effect. This anomalous effect can be also mimicked by a spatially closed Universe with a very low value of Hubble constant that consequently aggravates the already existing discordance between cosmological observations. We reconstruct a signature from the early Universe, a particular form of oscillation in the primordial spectrum of quantum fluctuations with a characteristic frequency, that solves all these anomalies. Interestingly, we find this form of the primordial spectrum resolves or substantially subsides, various tensions in the standard model of cosmology in fitting different observations, namely Planck CMB, clustering and weak lensing shear measurements from several large scale structure surveys, local measurements of Hubble constant, and recently estimated age of the Universe from globular clusters. We support our findings phenomenologically, by proposing an analytical form of the primordial spectrum with similar features and demonstrate that it agrees remarkably well with various combinations of cosmological observations. We support further our findings theoretically, by introducing a single scalar field potential for inflation that can generate such a form of the primordial spectrum.