论文标题

空隙中的红移空间及其对宇宙学测试的影响。第一部分:空隙尺寸功能

Redshift-space effects in voids and their impact on cosmological tests. Part I: the void size function

论文作者

Correa, Carlos M., Paz, Dante J., Sánchez, Ariel G., Ruiz, Andrés N., Padilla, Nelson D., Angulo, Raúl E.

论文摘要

空隙是有希望的宇宙学探针。然而,每个基于空隙的宇宙学测试都必须采用在红移空间中识别它们的方法。因此,红移空间畸变(RSD)和Alcock-Paczynski效应(AP)对空隙识别过程本身产生了观测中的失真模式。使用球形空隙发现器,我们开发了一个统计和理论框架,以物理描述真实和红移空间中的识别之间的联系。我们发现,射击噪声水平上方的红移空间空隙具有独特的真实空间对应物,跨越了同一空间区域,它们在系统上更大,并且其中心优先沿着视线变化。膨胀效果是示踪剂动力学在空隙半径周围的尺度上引起的RSD的副产品,而偏心效应构成了由包含空隙的整个区域的全局动力学在较大尺度引起的不同类别的RSD。假设测量距离的基准宇宙学也改变了空隙的体积,这是体积的AP变化。这三个系统学对宇宙统计有影响。在这项工作中,我们专注于空隙尺寸函数。我们开发了一个理论框架来对这些效果进行建模,并通过数值模拟对其进行了测试,从而恢复了真实空间中空隙丰度的统计特性。此描述在很大程度上取决于宇宙学。因此,我们为改善当前数量的空隙模型而奠定了基础,以便从红移调查中获得无偏见的宇宙学约束。

Voids are promising cosmological probes. Nevertheless, every cosmological test based on voids must necessarily employ methods to identify them in redshift space. Therefore, redshift-space distortions (RSD) and the Alcock-Paczynski effect (AP) have an impact on the void identification process itself generating distortion patterns in observations. Using a spherical void finder, we developed a statistical and theoretical framework to describe physically the connection between the identification in real and redshift space. We found that redshift-space voids above the shot noise level have a unique real-space counterpart spanning the same region of space, they are systematically bigger and their centres are preferentially shifted along the line of sight. The expansion effect is a by-product of RSD induced by tracer dynamics at scales around the void radius, whereas the off-centring effect constitutes a different class of RSD induced at larger scales by the global dynamics of the whole region containing the void. The volume of voids is also altered by the fiducial cosmology assumed to measure distances, this is the AP change of volume. These three systematics have an impact on cosmological statistics. In this work, we focus on the void size function. We developed a theoretical framework to model these effects and tested it with a numerical simulation, recovering the statistical properties of the abundance of voids in real space. This description depends strongly on cosmology. Hence, we lay the foundations for improvements in current models of the abundance of voids in order to obtain unbiased cosmological constraints from redshift surveys.

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