论文标题

对光环质量函数与光环的内部暗物质结构之间关系的非参数方法

A non-parametric approach to the relation between the halo mass function and internal dark matter structure of haloes

论文作者

Richardson, T. R. G., Corasaniti, P. -S.

论文摘要

语境。星系簇质量通常定义为封闭给定物质过度密度(以临界密度的单位)的球形区域内的质量。将质量从一个过度密度定义转换为另一个有用的应用程序。目标。在本文中,我们提出了一种通用的非参数形式主义,它允许使用定义为两个质量比率的光环稀释度的分布在两个不同的质量过度密度定义之间准确映射光环质量函数。我们表明,改变质量定义会减少对光晕稀释度的分布进行建模。方法。使用随机变体的标准变换规则,我们在不同过度的晕圈质量函数与光晕稀数分布之间得出关系。结果。我们表明,这些关系在统计误差中以几个百分点的水平重现了UCHUU模拟的N体晕质量函数。此外,这些关系允许在不同过度处的光环质量函数与光晕密度曲线的参数描述有关。特别是,我们讨论了Navarro-Frenk-White曲线的浓度质量关系的情况。最后,我们表明,这种关系的使用使我们能够预测给定质量的光环样本的稀疏分布,从而为从单个星系群集稀疏度测量中推断宇宙学的约束开辟了道路。

Context. Galaxy cluster masses are usually defined as the mass within a spherical region enclosing a given matter overdensity (in units of the critical density). Converting masses from one overdensity definition to another can have several useful applications. Aims. In this article we present a generic non-parametric formalism that allows one to accurately map the halo mass function between two different mass overdensity definitions using the distribution of halo sparsities defined as the ratio of the two masses. We show that changing mass definitions reduces to modelling the distribution of halo sparsities. Methods. Using standard transformation rules of random variates, we derive relations between the halo mass function at different overdensities and the distribution of halo sparsities. Results. We show that these relations reproduce the N-body halo mass functions from the Uchuu simulation within the statistical errors at a few percent level. Furthermore, these relations allow the halo mass functions at different overdensities to be related to parametric descriptions of the halo density profile. In particular, we discuss the case of the concentration-mass relation of the Navarro-Frenk-White profile. Finally, we show that the use of such relations allows us to predict the distribution of sparsities of a sample of haloes of a given mass, thus opening the way to inferring cosmological constraints from individual galaxy cluster sparsity measurements.

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