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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Voids in massive neutrino cosmologies
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Voids in massive neutrino cosmologies

机译:中微子宇宙学中的空洞

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摘要

Cosmic voids are a promising environment to characterize neutrino-induced effects on the large-scale distribution of matter in the universe. We perform a comprehensive numerical study of the statistical properties of voids, identified both in the matter and galaxy distributions, in massive and massless neutrino cosmologies. The matter density field is obtained by running several independent N-body simulations with cold dark matter and neutrino particles, while the galaxy catalogs are modeled by populating the dark matter halos in simulations via a halo occupation distribution (HOD) model to reproduce the clustering properties observed by the Sloan Digital Sky Survey (SDSS) II Data Release 7. We focus on the impact of massive neutrinos on the following void statistical properties: number density, ellipticities, two-point statistics, density and velocity profiles. Considering the matter density field, we find that voids in massive neutrino cosmologies are less evolved than those in the corresponding massless neutrinos case: there is a larger number of small voids and a smaller number of large ones, their pro files are less evacuated, and they present a lower wall at the edge. Moreover, the degeneracy between sigma(8) and Omega(nu) is broken when looking at void properties. In terms of the galaxy density field, we find that differences among cosmologies are difficult to detect because of the small number of galaxy voids in the simulations. Differences are instead present when looking at the matter density and velocity profiles around these voids.
机译:宇宙空隙是表征中微子对宇宙中物质大规模分布的影响的有前途的环境。我们对大量和无质量的中微子宇宙学中在物质和星系分布中确定的空隙的统计特性进行了全面的数值研究。物质密度场是通过对冷暗物质和中微子粒子进行几次独立的N体模拟而获得的,而星系目录则是通过晕圈占据分布(HOD)模型在模拟中填充暗物质晕来建模的,以再现聚类性质。由Sloan Digital Sky Survey(SDSS)II数据发布7观察到。我们着重研究中微子对以下空隙统计特性的影响:数密度,椭圆率,两点统计,密度和速度剖面。考虑到物质密度场,我们发现大中微子宇宙学中的空洞比相应的无质量中微子情况下的空洞演化少:存在大量的小空洞,数量较少的大空洞,它们的专业档案较少疏散,并且他们在边缘呈现出一堵下墙。此外,当查看空隙性质时,sigma(8)和Omega(nu)之间的简并性将被破坏。在银河系密度场方面,我们发现由于模拟中的银河系空隙数量少,很难检测到宇宙学之间的差异。当查看这些空洞周围的物质密度和速度分布时,存在差异。

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