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An effective description of dark matter and dark energy in the mildly non-linear regime

机译:在温和的非线性状态下有效描述暗物质和黑暗能量

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In the next few years, we are going to probe the low-redshift universe with unprecedented accuracy. Among the various fruits that this will bear, it will greatly improve our knowledge of the dynamics of dark energy, though for this there is a strong theoretical preference for a cosmological constant. We assume that dark energy is described by the so-called Effective Field Theory of Dark Energy, which assumes that dark energy is the Goldstone boson of time translations. Such a formalism makes it easy to ensure that our signatures are consistent with well-established principles of physics. Since most of the information resides at high wavenumbers, it is important to be able to make predictions at the highest wavenumber that is possible. The effective Field Theory of Large-Scale Structure (EFTofLSS) is a theoretical framework that has allowed us to make accurate predictions in the mildly non-linear regime. In this paper, we derive the non-linear equations that extend the EFTofLSS to include the effect of dark energy both on the matter fields and on the biased tracers. For the specific case of clustering quintessence, we then perturbatively solve to cubic order the resulting non-linear equations and construct the one-loop power spectrum of the total density contrast.
机译:在接下来的几年里,我们将以前所未有的准确性探测低红板宇宙。在这将承担的各种水果中,它将大大提高我们对暗能量动态的了解,但对于这而言,对宇宙常数持续存在强烈的理论偏好。我们假设暗能量被暗能的所谓的暗能源理论描述,这假设黑暗能量是时间翻译的金石玻色子。这种形式主义使得可以轻松确保我们的签名与既定的物理原则一致。由于大多数信息驻留在高挥虫器上,因此能够在可能的最高波浪中进行预测。大规模结构(EFTOFLS)的有效现场理论是一种理论框架,使我们能够在温和的非线性方案中做出准确的预测。在本文中,我们得出了延伸了EFTOFLS的非线性方程,以包括在物质领域和偏置示踪剂上的暗能效果。对于聚类Quintessence的具体情况,我们然后扰乱地解决了由结果的非线性方程的立方命令,构建总密度对比度的单环功率谱。

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