论文标题

在达到百分比精度的道路上iv:react-计算超过$λ$ cdm的非线性功率谱

On the road to percent accuracy IV: ReACT -- computing the non-linear power spectrum beyond $Λ$CDM

论文作者

Bose, Benjamin, Cataneo, Matteo, Tröster, Tilman, Xia, Qianli, Heymans, Catherine, Lombriser, Lucas

论文摘要

为了有效利用大规模结构调查,我们依赖于非线性宇宙结构形成的准确和可靠的预测。因此,进行有效且全面的计算建模工具对于执行宇宙参数推理分析至关重要。我们介绍了公共软件包的反应,证明了其能力,可快速准确计算非标准物理学的非线性功率谱。我们通过对DGP和$ F(R)$重力模型进行了一系列分析,展示了采用LSST样宇宙剪切功率谱的反应。与$ f(r)$参数相比,与React的准确非线性建模具有超过双LSST的约束功率,而该分析仅限于准线性状态。我们发现,对于当前和正在进行的调查,对一致的限制对$λ$ CDM的理论的一致限制的推断非常强大。随着进一步的改进,特别是就非线性$λ$ CDM功率谱的准确性而言,React原则上可以满足未来调查(例如Euclid and LSST)的准确性要求。

To effectively exploit large-scale structure surveys, we depend on accurate and reliable predictions of non-linear cosmological structure formation. Tools for efficient and comprehensive computational modelling are therefore essential to perform cosmological parameter inference analyses. We present the public software package ReACT, demonstrating its capability for the fast and accurate calculation of non-linear power spectra from non-standard physics. We showcase ReACT through a series of analyses on the DGP and $f(R)$ gravity models, adopting LSST-like cosmic shear power spectra. Accurate non-linear modelling with ReACT has the potential to more than double LSST's constraining power on the $f(R)$ parameter, in contrast to an analysis that is limited to the quasi-linear regime. We find that ReACT is sufficiently robust for the inference of consistent constraints on theories beyond $Λ$CDM for current and ongoing surveys. With further improvement, particularly in terms of the accuracy of the non-linear $Λ$CDM power spectrum, ReACT can, in principle, meet the accuracy requirements for future surveys such as Euclid and LSST.

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