论文标题
速度依赖性相互作用的暗能量和深色物质,以及对完美液体的Lagrangian描述
Velocity-dependent interacting dark energy and dark matter with a Lagrangian description of perfect fluids
论文作者
论文摘要
我们考虑了一个宇宙学的场景,其中通过速度依赖性耦合相互作用的两个完美的流体描述了黑暗区域。这种耦合产生了由组件的相对速度驱动的黑暗扇区的相互作用,从而使背景进化不见于相互作用,并且只有扰动的欧拉方程在一阶中受到影响。我们通过Schutz-Sorkin Lagrangian配方获得了该系统的方程式,以提供完美的流体,并得出相应的稳定条件,以避免幽灵和拉普拉斯不稳定性。作为一个特殊的例子,我们研究了一个模型,其中暗能在高红移时以辐射流体的形式表现为辐射流体,而在后期宇宙中它有效地成为宇宙常数。在这种情况下,我们表明两个黑暗成分的相互作用都会导致抑制后期的暗物质聚类。我们还认为,这种抑制聚类以及早期额外的黑暗辐射可以同时减轻$σ_8$和$ H_0 $张力的可能性。
We consider a cosmological scenario where the dark sector is described by two perfect fluids that interact through a velocity-dependent coupling. This coupling gives rise to an interaction in the dark sector driven by the relative velocity of the components, thus making the background evolution oblivious to the interaction and only the perturbed Euler equations are affected at first order. We obtain the equations governing this system with the Schutz-Sorkin Lagrangian formulation for perfect fluids and derive the corresponding stability conditions to avoid ghosts and Laplacian instabilities. As a particular example, we study a model where dark energy behaves as a radiation fluid at high redshift while it effectively becomes a cosmological constant in the late Universe. Within this scenario, we show that the interaction of both dark components leads to a suppression of the dark matter clustering at late times. We also argue the possibility that this suppression of clustering together with the additional dark radiation at early times can simultaneously alleviate the $σ_8$ and $H_0$ tensions.