CEICO, Institute of Physics of the Czech Academy of Sciences, Na Slovance 2, Praha 8, Czech Republic.
Department of Physics, University of Cyprus, 1, Panepistimiou Street, 2109 Aglantzia, Cyprus.
Phys Rev Lett. 2018 Jun 1;120(22):221102. doi: 10.1103/PhysRevLett.120.221102.
Cold dark matter is a crucial constituent of the current concordance cosmological model. Having a vanishing equation of state (EOS), its energy density scales with the inverse cosmic volume and is thus uniquely described by a single number, its present abundance. We test the inverse cosmic volume law for dark matter (DM) by allowing its EOS to vary independently in eight redshift bins in the range z=10^{5} and z=0. We use the latest measurements of the cosmic microwave background radiation from the Planck satellite and supplement them with baryon acoustic oscillation (BAO) data from the 6dF and SDSS-III BOSS surveys and with the Hubble Space Telescope (HST) key project data. We find no evidence for nonzero EOS in any of the eight redshift bins. With Planck data alone, the DM abundance is most strongly constrained around matter-radiation equality ω_{g}^{eq}=0.1193_{-0.0035}^{+0.0036} (95% C.L.), whereas its present-day value is more weakly constrained: ω_{g}^{(0)}=0.16_{-0.10}^{+0.12} (95% C.L.). Adding BAO or HST data does not significantly change the ω_{g}^{eq} constraint, while ω_{g}^{(0)} tightens to 0.160_{-0.065}^{+0.069} (95% C.L.) and 0.124_{-0.067}^{+0.081} (95% C.L.), respectively. Our results constrain for the first time the level of "coldness" required of the DM across various cosmological epochs and show that the DM abundance is strictly positive at all times.
冷暗物质是当前宇宙学标准模型的关键组成部分。它的状态方程为零(EOS),其能量密度随宇宙体积的倒数而缩放,因此仅由一个数字来描述,即其当前丰度。我们通过允许其 EOS 在 z=10^{5}到 z=0 的八个红移区间内独立变化,来检验暗物质(DM)的宇宙体积倒数定律。我们使用普朗克卫星对宇宙微波背景辐射的最新测量结果,并补充了来自 6dF 和 SDSS-III BOSS 巡天以及哈勃太空望远镜(HST)关键项目的数据的重子声学振荡(BAO)数据。我们在任何一个红移区间都没有发现非零 EOS 的证据。仅使用普朗克数据,DM 丰度在物质-辐射相等时受到最强的约束,ω_{g}^{eq}=0.1193_{-0.0035}^{+0.0036}(95%置信区间),而其当今的值受到较弱的约束:ω_{g}^{(0)}=0.16_{-0.10}^{+0.12}(95%置信区间)。添加 BAO 或 HST 数据不会显著改变 ω_{g}^{eq}的约束,而 ω_{g}^{(0)}则分别收紧到 0.160_{-0.065}^{+0.069}(95%置信区间)和 0.124_{-0.067}^{+0.081}(95%置信区间)。我们的结果首次限制了各种宇宙时代暗物质所需的“冷度”水平,并表明暗物质的丰度在所有时间都严格为正。