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首页> 外文期刊>The Astrophysical journal >PHYSICS OF NON-GAUSSIAN FIELDS AND THE COSMOLOGICAL GENUS STATISTIC
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PHYSICS OF NON-GAUSSIAN FIELDS AND THE COSMOLOGICAL GENUS STATISTIC

机译:非高斯场的物理学和宇宙学类统计

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We report a technique to calculate the impact of distinct physical processes inducing non-Gaussianity on the cosmological density field. A natural decomposition of the cosmic genus statistic into an orthogonal polynomial sequence allows complete expression of the scale-dependent evolution of the topology of large-scale structure, in which effects including galaxy bias, nonlinear gravitational evolution, and primordial non-Gaussianity may be delineated. The relationship of this decomposition to previous methods for analyzing the genus statistic is briefly considered and the following applications are made: (1) the expression of certain systematics affecting topological measurements, (2) the quantification of broad deformations from Gaussianity that appear in the genus statistic as measured in the Horizon Run simulation, and (3) the study of the evolution of the genus curve for simulations with primordial non-Gaussianity. These advances improve the treatment of flux-limited galaxy catalogs for use with this measurement and further the use of the genus statistic as a tool for exploring non-Gaussianity.
机译:我们报告了一种技术,该技术可以计算引起非高斯性的不同物理过程对宇宙密度场的影响。将宇宙属统计量自然分解为正交多项式序列,可以完整表达大规模结构拓扑的尺度相关演化,其中可以描述包括星系偏差,非线性引力演化和原始非高斯性的效应。简要考虑了此分解与先前用于分析属统计量的方法之间的关系,并进行了以下应用:(1)影响拓扑测量的某些系统的表达,(2)归因于高斯性的广义形变的量化Horizo​​n Run仿真中测得的统计数据;以及(3)对原始非高斯仿真中类属曲线的演化的研究。这些进步改进了用于此测量的通量受限星系目录的处理,并进一步将属统计用作探索非高斯性的工具。

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