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Cosmic Strings and Their Induced Non-Gaussianities in the Cosmic Microwave Background

机译:宇宙微波背景下的宇宙弦及其非高斯性

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Motivated by the fact that cosmological perturbations of inflationary quantum origin were born Gaussian, the search for non-Gaussianities in the cosmic microwave background (CMB) anisotropies is considered as the privileged probeof nonlinear physics in the early universe. Cosmic strings are active sources of gravitational perturbations and incessantly produce non-Gaussian distortions in the CMB. Even if, on the currently observed angular scales, they can only contribute asmall fraction of the CMB angular power spectrum, cosmic strings could actually be the main source of its non-Gaussianities. In this paper, after having reviewed the basic cosmological properties of a string network, we present the signatures Nambu-Goto cosmic strings would induce in various observables ranging from the one-point function of the temperature anisotropies to the bispectrum and trispectrum. It is shown that string imprints are significantly different than those expected from the primordial type of non-Gaussianity and could therefore be easily distinguished.
机译:受到膨胀量子起源的宇宙学扰动是高斯天生的事实的推动,在宇宙微波背景(CMB)各向异性中寻找非高斯性被认为是早期宇宙中非线性物理学的特权探索。宇宙弦是引力扰动的活跃来源,并不断在CMB中产生非高斯失真。即使在当前观察到的角尺度上,它们仅能贡献CMB角功率谱的一小部分,宇宙弦实际上可能是其非高斯性的主要来源。在本文中,在回顾了弦网络的基本宇宙学特性之后,我们提出了南宝-后藤宇宙弦在各种可观测变量中会引起的签名,从温度各向异性的单点函数到双谱和三谱。结果表明,字符串印记与非高斯原始类型所期望的显着不同,因此可以轻松地区分。

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