论文标题

与线性相互作用相互作用的真空能量的观察性约束

Observational constraints on interacting vacuum energy with linear interactions

论文作者

Kaeonikhom, Chakkrit, Assadullahi, Hooshyar, Schewtschenko, Jascha, Wands, David

论文摘要

我们使用最先进的宇宙学观察结果探索可以在冷暗物质和真空能量之间的相互作用上放置的边界。我们考虑有关简单背景模型的线性扰动,其中每个哈勃时间的能量传输$ q/h $,是暗物质密度,$ρ_C$和真空能的一般线性函数,$ v $。我们解释了单独拟合宇宙微波背景(CMB)各向异性时发现的参数归化度,并通过添加超新星数据,BARYON声学振荡(BAO)和偶像造影空间扭曲(RSD)来显示它们如何破坏它们。特别是,在存在非零能量转移的情况下,将红移空间变形与结构的生长相关时,必须注意。黑暗扇区中的相互作用可以减轻哈勃参数的低频测量测量,$ H_0 $或弱透镜,$ S_8 $与从CMB数据推出的值之间的张力。但是,当我们包含超新星和BAO-RSD数据集的约束时,这些紧张局势会返回。在一般的线性交互模型中,我们表明,虽然可以同时放松哈勃和弱透明的紧张局势,但这些紧张局势的减少是适度的(分别降低到略低于$4σ$和$2σ$)。

We explore the bounds that can be placed on interactions between cold dark matter and vacuum energy, with equation of state $w=-1$, using state-of-the-art cosmological observations. We consider linear perturbations about a simple background model where the energy transfer per Hubble time, $Q/H$, is a general linear function of the dark matter density, $ρ_c$, and vacuum energy, $V$. We explain the parameter degeneracies found when fitting cosmic microwave background (CMB) anisotropies alone, and show how these are broken by the addition of supernovae data, baryon acoustic oscillations (BAO) and redshift-space distortions (RSD). In particular, care must be taken when relating redshift-space distortions to the growth of structure in the presence of non-zero energy transfer. Interactions in the dark sector can alleviate the tensions between low-redshift measurements of the Hubble parameter, $H_0$, or weak-lensing, $S_8$, and the values inferred from CMB data. However these tensions return when we include constraints from supernova and BAO-RSD datasets. In the general linear interaction model we show that, while it is possible to relax both the Hubble and weak-lensing tensions simultaneously, the reduction in these tensions is modest (reduced to less slightly than $4σ$ and $2σ$ respectively).

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