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Cosmological quests in the CMB sky

机译:CMB天空中的宇宙探索

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摘要

Observational cosmology has indeed made a very rapid progress in recent years. The ability to quantify the universe has largely improved due to observational constraints coming from structure formation measurements of CMB anisotropy and, more recently, polarization has played a very important role. Besides precise determination of various parameters of the "standard" cosmological model, observations have also established some important basic tenets that underlie models of cosmology and structure formation in the universe - "acausally" correlated initial perturbations in a flat, statistically isotropic universe, adiabatic nature of primordial density perturbations. These are consistent with the expectation of the paradigm of inflation and the generic prediction of the simplest realization of inflationary scenario in the early universe. Further, gravitational instability is the established mechanism for structure formation from these initial perturbations. In the next decade, future experiments promise to strengthen these deductions and uncover the remaining crucial signature of inflation - the primordial gravitational wave background.
机译:近年来,观测宇宙学确实取得了非常迅速的进步。由于CMB各向异性的结构形成测量产生的观测限制,量化宇宙的能力已大大提高,最近,极化起了非常重要的作用。除了精确确定“标准”宇宙学模型的各种参数外,观测还建立了一些重要的基本原理,这些基本原理是宇宙中宇宙学和结构形成模型的基础-“无定理”地关联于平坦的,统计各向同性的宇宙中的初始扰动,绝热性质原始密度扰动这些符合对通货膨胀范式的期望以及对早期宇宙中通货膨胀情景最简单实现的一般性预测。此外,重力不稳定性是由这些初始扰动形成结构的既定机制。在接下来的十年中,未来的实验有望加强这些推论,并揭示通货膨胀的剩余关键特征-原始引力波背景。

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