论文标题
通过拓扑数据分析的关于重子声学振荡的研究
A Study on the Baryon Acoustic Oscillation with Topological Data Analysis
论文作者
论文摘要
(删节)重子 - photon解耦在宇宙中星系的空间分布(称为Baryon声学振荡(BAO))的bary子声振荡的尺度。相关函数和功率谱被用作BAO分析研究的中心工具。在这项工作中,我们通过拓扑数据分析(TDA)的方法分析了星系的空间分布,以检测和检查星系分布中的BAO信号。 TDA通过从数据点的几何结构中构造持续的同源(pH)组并处理数据集的拓扑信息,从而提供了一种处理点集数据中各种“孔”的方法。我们可以获取有关数据中孔的大小,位置和统计显着性的信息。持续同源性的一个特别强的点是,它可以通过其空间维度(即0-DIM分离,1-DIM环,2-Dim Shell等)对孔进行分类。我们首先使用有或没有Baryon物理学来检查pH方法的性能。我们发现,pH值确实能够检测BAO信号:带有Baryon物理学的仿真数据呈现出BAO的突出信号,而没有Baryon物理的数据并未显示该信号。然后,我们将pH在斯隆数字天空调查数据版本14中以$ z <1.0 $的价格应用于$ z <1.0 $。我们发现了一个特征性孔(一个空心壳),该孔(一个空心壳)以scale $ \ sim150 \ [{\ rm mpc}] $。这完全对应于银河/类星体分布中印记的BAO签名。我们对2000种类星体的小子样本进行了此分析。这清楚地表明,即使采样非常稀疏,pH分析也非常有效地找到这种拓扑结构。
(abridged) The scale of the acoustic oscillation of baryons at the baryon-photon decoupling is imprinted on the spatial distribution of galaxies in the Universe, known as the baryon acoustic oscillation (BAO). The correlation functions and power spectrum are used as a central tool for the studies on the BAO analysis. In this work, we analyzed the spatial distribution of galaxies with a method from the topological data analysis (TDA), in order to detect and examine the BAO signal in the galaxy distribution. The TDA provides a method to treat various types of "holes" in point set data, by constructing the persistent homology (PH) group from the geometric structure of data points and handling the topological information of the dataset. We can obtain the information on the size, position, and statistical significance of the holes in the data. A particularly strong point of the persistent homology is that it can classify the holes by their spatial dimension, i.e., a 0-dim separation, 1-dim loop, 2-dim shell, etc. We first analyzed the simulation datasets with and without the baryon physics to examine the performance of the PH method. We found that the PH is indeed able to detect the BAO signal: simulation data with baryon physics present a prominent signal from the BAO, while data without baryon physics does not show this signal. Then, we applied the PH to a quasar sample at $z <1.0$ from extended Baryon Oscillation Spectroscopic Survey in Sloan Digital Sky Survey Data Release 14. We discovered a characteristic hole (a hollow shell) at a scaler $\sim150\ [{\rm Mpc}]$. This exactly corresponds to the BAO signature imprinted in the galaxy/quasar distribution. We performed this analysis on a small subsample of 2000 quasars. This clearly demonstrates that the PH analysis is very efficient in finding this type of topological structures even if the sampling is very sparse.