论文标题

来自三维光锥的数据驱动宇宙学

Data-driven Cosmology from Three-dimensional Light Cones

论文作者

Cheng, Yun-Ting, Wandelt, Benjamin D., Chang, Tzu-Ching, Dore, Olivier

论文摘要

我们提出了一种数据驱动的技术,可以分析来自即将进行的宇宙学调查映射大型天空区域的多频图像。使用来自两点级别的数据的完整信息,我们的方法可以同时限制发射源的大规模结构(LSS),光谱和红移分布以及观察到的数据中的噪声,而没有任何以前的假设超出了宇宙学上扰动的同质性和同位素。特别是,该方法不依赖于源检测,光度或光谱红移估计值。在这里,我们介绍了形式主义,并通过九个光学和近红外光度带的模拟观察来演示我们的技术。我们的方法可以恢复输入信号和噪声而没有偏差,并量化约束的不确定性。我们的技术提供了一个灵活的框架,可以分析不同类型的来源所追踪的LSS观察,该来源有可能广泛应用于当前或将来的宇宙学数据集,例如Spherex,Rubin天文台,Euclid或Nancy Grace Roman Roman Space望远镜。

We present a data-driven technique to analyze multifrequency images from upcoming cosmological surveys mapping large sky area. Using full information from the data at the two-point level, our method can simultaneously constrain the large-scale structure (LSS), the spectra and redshift distribution of emitting sources, and the noise in the observed data without any prior assumptions beyond the homogeneity and isotropy of cosmological perturbations. In particular, the method does not rely on source detection or photometric or spectroscopic redshift estimates. Here, we present the formalism and demonstrate our technique with a mock observation from nine optical and near-infrared photometric bands. Our method can recover the input signal and noise without bias, and quantify the uncertainty on the constraints. Our technique provides a flexible framework to analyze the LSS observation traced by different types of sources, which has potential for wide application to current or future cosmological datasets such as SPHEREx, Rubin Observatory, Euclid, or the Nancy Grace Roman Space Telescope.

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