论文标题

设置阶段:高斯随机字段的结构

Setting the Stage: Structures from Gaussian Random Fields

论文作者

Sawala, Till, Jenkins, Adrian, McAlpine, Stuart, Jasche, Jens, Lavaux, Guilhem, Johansson, Peter H., Frenk, Carlos S.

论文摘要

我们研究了一组宇宙学模拟中的结构形成,以发现初始密度场中的尺度,从而导致当今结构的形成。我们的仿真共享一个共同的原始功率谱(此处为lambda-cdm),但是阶段信息的层次变化引入使我们能够系统地研究确定稍后结构形成的量表。我们考虑Z = 0统计数据的差异,例如物质功率谱和光晕质量函数。我们还为跨模拟的单个光环存在定义了一个标准,并确定初始密度场中的哪些尺度包含足够的信息,以实现独特的光环的非线性形成。我们研究单个光环的特征,例如质量和浓度以及位置和速度,受到不同尺度上的变化的影响,并为不同质量的光环提供了比例关系。最后,我们使用簇质量光环的示例来说明如何使用初始密度字段的分层参数化来创建特定对象的变体。凭借质量,浓度,运动学和光环的子结构等特性设置在独特且确定的尺度上,以及其引入在实际空间中定位的变化的独特能力,我们的方法是研究宇宙学模拟中结构形成的强大工具。

We study structure formation in a set of cosmological simulations to uncover the scales in the initial density field that gave rise to the formation of present-day structures. Our simulations share a common primordial power spectrum (here Lambda-CDM), but the introduction of hierarchical variations of the phase information allows us to systematically study the scales that determine the formation of structure at later times. We consider the variance in z=0 statistics such as the matter power spectrum and halo mass function. We also define a criterion for the existence of individual haloes across simulations, and determine what scales in the initial density field contain sufficient information for the non-linear formation of unique haloes. We study how the characteristics of individual haloes such as the mass and concentration, as well as the position and velocity, are affected by variations on different scales, and give scaling relations for haloes of different mass. Finally, we use the example of a cluster-mass halo to show how our hierarchical parametrisation of the initial density field can be used to create variants of particular objects. With properties such as mass, concentration, kinematics and substructure of haloes set on distinct and well-determined scales, and its unique ability to introduce variations localised in real space, our method is a powerful tool to study structure formation in cosmological simulations.

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