大质量中微子修正引力模型中的宇宙空洞

S. Contarini, F. Marulli, L. Moscardini, A. Veropalumbo, C. Giocoli, M. Baldi
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引用次数: 22

摘要

宇宙空洞正逐渐成为一种新的可行的宇宙探测器。它们的丰度和密度分布对重力变化、暗能量和中微子都很敏感。这项工作的主要目标是研究利用宇宙空洞统计来解开由f(R)修正重力和中微子质量的适当组合所产生的简并的可能性。我们使用大n体模拟来分析暗物质粒子和光晕所追踪的空洞的密度分布和尺寸函数。我们在$z=1$处的空洞密度分布中发现了$f(R)$宇宙学中重力增强的明确证据。然而,由于它们的热自由流,这些效应几乎可以被大质量中微子的存在完全覆盖。另一方面,我们发现在高红移和大空洞处的空洞尺寸函数是解开这些简并宇宙学模型的有效探针,这是对即将到来的宽场红移调查的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cosmic voids in modified gravity models with massive neutrinos
Cosmic voids are progressively emerging as a new viable cosmological probe. Their abundance and density profiles are sensitive to modifications of gravity, as well as to dark energy and neutrinos. The main goal of this work is to investigate the possibility of exploiting cosmic void statistics to disentangle the degeneracies resulting from a proper combination of $f(R)$ modified gravity and neutrino mass. We use large N-body simulations to analyse the density profiles and size function of voids traced by both dark matter particles and haloes. We find clear evidence of the enhancement of gravity in $f(R)$ cosmologies in the void density profiles at $z=1$. However, these effects can be almost completely overridden by the presence of massive neutrinos because of their thermal free-streaming. On the other hand, we find that the void size function at high redshifts and for large voids is an effective probe to disentangle these degenerate cosmological models, which is key in the prospective of the upcoming wide field redshift surveys.
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