Institut d'Astrophysique de Paris, UMR 7095, CNRS - Université Pierre et Marie Curie (Univ Paris 06), 75014 Paris, France and Department of Physics, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Institut d'Astrophysique de Paris, UMR 7095, CNRS - Université Pierre et Marie Curie (Univ Paris 06), 75014 Paris, France and Department of Physics, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA and Center for Cosmology and AstroParticle Physics, Ohio State University, Columbus, Ohio 43210, USA.
Phys Rev Lett. 2014 Jan 31;112(4):041304. doi: 10.1103/PhysRevLett.112.041304. Epub 2014 Jan 29.
Galaxy bias, the unknown relationship between the clustering of galaxies and the underlying dark matter density field is a major hurdle for cosmological inference from large-scale structure. While traditional analyses focus on the absolute clustering amplitude of high-density regions mapped out by galaxy surveys, we propose a relative measurement that compares those to the underdense regions, cosmic voids. On the basis of realistic mock catalogs we demonstrate that cross correlating galaxies and voids opens up the possibility to calibrate galaxy bias and to define a static ruler thanks to the observable geometric nature of voids. We illustrate how the clustering of voids is related to mass compensation and show that volume-exclusion significantly reduces the degree of stochasticity in their spatial distribution. Extracting the spherically averaged distribution of galaxies inside voids from their cross correlations reveals a remarkable concordance with the mass-density profile of voids.
星系偏置是星系聚类与潜在暗物质密度场之间未知关系的一个主要障碍,它是从大尺度结构推断宇宙学的主要障碍。虽然传统的分析方法侧重于通过星系调查绘制的高密度区域的绝对聚类幅度,但我们提出了一种相对测量方法,将其与欠密度区域(宇宙空洞)进行比较。基于现实的模拟目录,我们证明通过交叉相关星系和空洞,可以校准星系偏置,并定义一个静态标尺,这要归功于空洞的可观测几何性质。我们说明了空洞的聚类与质量补偿的关系,并表明体积排除显著降低了它们空间分布的随机性程度。从交叉相关中提取空洞内部的球状平均星系分布,揭示了与空洞的质量密度分布的惊人一致性。