论文标题

合并宇宙学探针的快速灯光

Fast Lightcones for Combined Cosmological Probes

论文作者

Sgier, Raphael, Fluri, Janis, Herbel, Jörg, Réfrégier, Alexandre, Amara, Adam, Kacprzak, Tomasz, Nicola, Andrina

论文摘要

不同宇宙学探针的组合提供了$λ$ CDM型号和增强系统系统控制的严格测试。为此,我们提出了Sgier等人首次引入的LightCone Generator Ufalcon的扩展。 2019年(ARXIV:1801.05745),为不同的宇宙学探针模拟了一组自洽的地图。每个实现都是从相同的基础模拟密度场产生的,并包含不同探针的全套地图,即弱透镜剪切,星系过度密度,包括RSD,CMB透镜和CMB温度各向异性,来自ISW效应。 ufalcon执行的灯酮生成是并行的,并基于用GPU加速$ n $ n $ body code pkdgrav3模拟的大量周期卷的复制。构建LightCones的后处理仅需要大约1个壁时间小时的运行时间,对应于大约100个CPU小时。我们使用一个随机过程来增加与准全面的ufalcon map-realizations的数量,这使我们能够计算准确的多探针协方差矩阵。使用此框架,我们通过执行多探针可能性分析来预测宇宙学参数的约束,以结合模拟的未来阶段IV样调查。我们发现,探针之间的互相关包含可显着增加参数约束中的信息增益。我们还发现,由于包括更多的探针和互相关功率谱,因此使用非高斯协方差矩阵越来越重要。目前,包括弱重力镜头在内的Ufalcon软件包的版本可公开使用。

The combination of different cosmological probes offers stringent tests of the $Λ$CDM model and enhanced control of systematics. For this purpose, we present an extension of the lightcone generator UFalcon first introduced in Sgier et al. 2019 (arXiv:1801.05745), enabling the simulation of a self-consistent set of maps for different cosmological probes. Each realization is generated from the same underlying simulated density field, and contains full-sky maps of different probes, namely weak lensing shear, galaxy overdensity including RSD, CMB lensing, and CMB temperature anisotropies from the ISW effect. The lightcone generation performed by UFalcon is parallelized and based on the replication of a large periodic volume simulated with the GPU-accelerated $N$-Body code PkdGrav3. The post-processing to construct the lightcones requires only a runtime of about 1 walltime-hour corresponding to about 100 CPU-hours. We use a randomization procedure to increase the number of quasi-independent full-sky UFalcon map-realizations, which enables us to compute an accurate multi-probe covariance matrix. Using this framework, we forecast cosmological parameter constraints by performing a multi-probe likelihood analysis for a combination of simulated future stage-IV-like surveys. We find that the inclusion of the cross-correlations between the probes significantly increases the information gain in the parameter constraints. We also find that the use of a non-Gaussian covariance matrix is increasingly important, as more probes and cross-correlation power spectra are included. A version of the UFalcon package currently including weak gravitational lensing is publicly available.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源