Physics Department and INFN, Università di Roma "La Sapienza", Ple Aldo Moro 2, 00185 Rome, Italy.
Institute of Cosmology and Gravitation, University of Portsmouth, Dennis Sciama Building, Burnaby Road, Portsmouth PO1 3FX, United Kingdom.
Phys Rev Lett. 2014 Oct 31;113(18):181301. doi: 10.1103/PhysRevLett.113.181301. Epub 2014 Oct 30.
We show that a general late-time interaction between cold dark matter and vacuum energy is favored by current cosmological data sets. We characterize the strength of the coupling by a dimensionless parameter q(V) that is free to take different values in four redshift bins from the primordial epoch up to today. This interacting scenario is in agreement with measurements of cosmic microwave background temperature anisotropies from the Planck satellite, supernovae Ia from Union 2.1 and redshift space distortions from a number of surveys, as well as with combinations of these different data sets. Our analysis of the 4-bin interaction shows that a nonzero interaction is likely at late times. We then focus on the case q(V)≠0 in a single low-redshift bin, obtaining a nested one parameter extension of the standard ΛCDM model. We study the Bayesian evidence, with respect to ΛCDM, of this late-time interaction model, finding moderate evidence for an interaction starting at z=0.9, dependent upon the prior range chosen for the interaction strength parameter q(V). For this case the null interaction (q(V)=0, i.e., ΛCDM) is excluded at 99% C.L.
我们表明,冷暗物质和真空能之间的普遍晚期相互作用受到当前宇宙学数据集的青睐。我们通过无量纲参数 q(V)来描述耦合的强度,该参数在从原始时代到今天的四个红移区间内可以自由取不同的值。这种相互作用的情景与普朗克卫星测量的宇宙微波背景温度各向异性、联合 2.1 超新星 Ia 和许多调查的红移空间扭曲相吻合,也与这些不同数据集的组合相吻合。我们对 4 -bin 相互作用的分析表明,在晚期可能存在非零相互作用。然后,我们将重点放在单个低红移区间中 q(V)≠0 的情况下,得到标准 ΛCDM 模型的嵌套单参数扩展。我们研究了相对于 ΛCDM 的这种晚期相互作用模型的贝叶斯证据,发现从 z=0.9 开始存在相互作用的中等证据,这取决于所选相互作用强度参数 q(V)的先验范围。对于这种情况,零相互作用(q(V)=0,即 ΛCDM)在 99%置信水平下被排除。