论文标题

具有巨大中微子的修饰重力模型中的宇宙空隙

Cosmic voids in modified gravity models with massive neutrinos

论文作者

Contarini, Sofia, Marulli, Federico, Moscardini, Lauro, Veropalumbo, Alfonso, Giocoli, Carlo, Baldi, Marco

论文摘要

宇宙空隙逐渐成为一种新的可行宇宙学探针。它们的丰度和密度轮廓对重力的修饰以及暗能量和中微子敏感。这项工作的主要目的是调查利用宇宙空隙统计数据的可能性,以消除$ f(r)$修饰的重力和中微子质量的适当组合所产生的变性。我们使用N体模拟来分析暗物质颗粒和光环所追踪的空隙的密度曲线和大小函数。我们发现明确的证据表明,在$ z = 1 $的空隙密度概况中,$ f(r)$ cesmologies的重力增强。但是,由于其热自由流的存在,这些效果几乎可以被大量中微子的存在完全覆盖。尽管进行了分析的模拟数量有限,但不允许我们实现大于$ 40 \ \ \ \ \ \ \\ Mathrm {mpc}/h $的统计相关的空隙,但我们发现,在高红移处的空隙尺寸功能,对于大型空隙而言,大型空隙是有效的探针,可以有效地探究这些对隔离的自然化学模型,从而使这些模型的范围不在范围内。

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 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. Despite the limited volume of the analysed simulations does not allow us to achieve a statistically relevant abundance of voids larger than $40 \ \mathrm{Mpc}/h$, we find that the void size function at high redshifts and for large voids is potentially 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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