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Isotropic non-Gaussian g NL-like toy models that reproduce cosmic microwave background anomalies

机译:再现宇宙微波背景异常的各向同性非高斯 g NL 类玩具模型

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Context . Based on recent observations of the cosmic microwave background (CMB), claims of statistical anomalies in the properties of the CMB fluctuations have been made. Although the statistical significance of the anomalies remains only at the ~2?3 σ significance level, the fact that there are many different anomalies, several of which support a possible deviation from statistical isotropy, has motivated a search for models that provide a common mechanism to generate them. Aims . The goal of this paper is to investigate whether these anomalies could originate from non-Gaussian cosmological models, and to determine what properties these models should have. Methods . We present a simple isotropic, non-Gaussian class of toy models that can reproduce six of the most extensively studied anomalies. We compare the presence of anomalies found in simulated maps generated from the toy models and from a standard model with Gaussian fluctuations. Results . We show that the following anomalies, as found in the Planck data, commonly occur in the toy model maps: (1) large-scale hemispherical asymmetry (large-scale dipolar modulation), (2) small-scale hemispherical asymmetry (alignment of the spatial distribution of CMB power over all scales ??=?[2,?1500]), (3) a strongly non-Gaussian hot or cold spot, (4) a low power spectrum amplitude for ??< ?30, including specifically (5) a low quadrupole and an unusual alignment between the quadrupole and the octopole, and (6) parity asymmetry of the lowest multipoles. We note that this class of toy model resembles models of primordial non-Gaussianity characterised by strongly scale-dependent g _(NL)-like trispectra.
机译:语境。基于对宇宙微波背景(CMB)的最新观察,提出了CMB涨落特性统计异常的主张。尽管异常的统计显着性仅保持在〜2?3σ显着性水平,但是存在许多不同的异常这一事实促使人们寻找提供通用机制的模型,其中一些异常可能支持统计各向同性生成它们。目的。本文的目的是研究这些异常是否可能源自非高斯宇宙学模型,并确定这些模型应具有的特性。方法 。我们提出了一个简单的各向同性,非高斯类的玩具模型,该模型可以重现最广泛研究的六个异常。我们比较了从玩具模型和具有高斯起伏的标准模型生成的模拟地图中发现的异常的存在。结果。我们发现,在普朗克数据中发现的以下异常通常发生在玩具模型图中:(1)大尺度半球不对称(大尺度偶极调制),(2)小尺度半球不对称(对准CMB功率在所有尺度上的空间分布?? =?[2,?1500]),(3)强非高斯热点或冷点,(4)?? <?30的低功率谱幅度,包括(5)低四极杆和四极杆与八极杆之间的不寻常排列,以及(6)最低多极杆的奇偶性不对称。我们注意到,这类玩具模型类似于原始非高斯模型,其特征是与尺度高度相关的g _(NL)样三光谱。

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