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首页> 外文期刊>The Astrophysical journal >GENUS STATISTICS USING THE DELAUNAY TESSELLATION FIELD ESTIMATION METHOD. I. TESTS WITH THE MILLENNIUM SIMULATION AND THE SDSS DR7
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GENUS STATISTICS USING THE DELAUNAY TESSELLATION FIELD ESTIMATION METHOD. I. TESTS WITH THE MILLENNIUM SIMULATION AND THE SDSS DR7

机译:使用DELAUNAY TESSELLATION场估计方法的类统计。 I.使用千禧年仿真和SDSS DR7进行测试

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We study the topology of cosmic large-scale structure through the genus statistics, using galaxy catalogs generated from the Millennium Simulation and observational data from the latest Sloan Digital Sky Survey Data Release (SDSS DR7). We introduce a new method for constructing galaxy density fields and for measuring the genus statistics of its isodensity surfaces. It is based on a Delaunay tessellation field estimation (DTFE) technique that allows the definition of a piece-wise continuous density field and the exact computation of the topology of its polygonal isodensity contours, without introducing any free numerical parameter. Besides this new approach, we also employ the traditional approaches of smoothing the galaxy distribution with a Gaussian of fixed width, or by adaptively smoothing with a kernel that encloses a constant number of neighboring galaxies. Our results show that the Delaunay-based method extracts the largest amount of topological information. Unlike the traditional approach for genus statistics, it is able to discriminate between the different theoretical galaxy catalogs analyzed here, both in real space and in redshift space, even though they are based on the same underlying simulation model. In particular, the DTFE approach detects with high confidence a discrepancy of one of the semi-analytic models studied here compared with the SDSS data, while the other models are found to be consistent.
机译:我们通过属统计来研究宇宙大规模结构的拓扑,使用从千禧年模拟生成的星系目录和最新斯隆数字天空测量数据版本(SDSS DR7)的观测数据。我们介绍了一种构造星系密度场和测量其等密度面的属统计的新方法。它基于Delaunay细分曲面估计(DTFE)技术,该技术允许定义分段连续密度场并对其多边形等密度轮廓的拓扑进行精确计算,而无需引入任何自由数值参数。除了这种新方法之外,我们还采用传统方法来以固定宽度的高斯平滑星系分布,或者通过使用包围恒定数目的相邻星系的内核进行自适应平滑。我们的结果表明,基于Delaunay的方法提取了大量的拓扑信息。与传统的属统计方法不同,它可以在真实空间和红移空间中区分此处分析的不同理论星系目录,即使它们基于相同的基础模拟模型也是如此。特别是,DTFE方法可以高置信度地检测此处研究的一种半分析模型与SDSS数据之间的差异,而其他模型则是一致的。

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