论文标题

对修饰的重力中结构生长的相对论校正

Relativistic Corrections to the Growth of Structure in Modified Gravity

论文作者

Brando, Guilherme, Koyama, Kazuya, Wands, David

论文摘要

我们提出了一种基于n体规方法的牛顿模拟中引入相对论校正的方法。我们假设标准物质物种(冷暗物质,重子,光子和中微子)仅与标量场耦合,然后我们使用这样一个事实,即在总能量孔张量中可以将修饰的重力效应作为有效的暗能量流体。为了计算标量场扰动以及宇宙学背景和度量扰动,我们使用Einstein-Boltzmann代码\ Hiclass。例如,我们研究了相对论校正对霍德斯基理论的子类中物质功率谱的影响,包括无质量和庞大的中微子的影响。对于具有$ \ summ_ν= 0.1 $ eV的大量中微子,相对论物种(光子,中微子和暗能量)的校正可能会引入大约$ 7 \%$的最大偏差,以$ k \ sim 10^} { - 3} { - 3} { - 3} \ \ \ \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\于$ c_ {s}^{2} \ sim 0.013 $在物质统治时期。我们的形式主义使得通过即将在非常大的规模上进行大规模结构调查来探测的$λ$ CDM模型超出$λ$ CDM模型。

We present a method to introduce relativistic corrections including linear dark energy perturbations in Horndeski theory into Newtonian simulations based on the N-body gauge approach. We assume that standard matter species (cold dark matter, baryons, photons and neutrinos) are only gravitationally-coupled with the scalar field and we then use the fact that one can include modified gravity effects as an effective dark energy fluid in the total energy-momentum tensor. In order to compute the scalar field perturbations, as well as the cosmological background and metric perturbations, we use the Einstein-Boltzmann code \hiclass. As an example, we study the impact of relativistic corrections on the matter power spectrum in k-essence, a subclass of Horndeski theory, including the effects of massless and massive neutrinos. For massive neutrinos with $\sum m_ν = 0.1$ eV, the corrections due to relativistic species (photons, neutrinos and dark energy) can introduce a maximum deviation of approximately $7\%$ to the power spectrum at $k \sim 10^{-3} \ \textrm{Mpc}^{-1}$ at $z=0$, for a scalar field with sound speed $c_{s}^{2}\sim 0.013$ during matter domination epoch. Our formalism makes it possible to test beyond $Λ$CDM models probed by upcoming large-scale structure surveys on very large scales.

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