论文标题

相互作用的暗能量模型中的暗物质光环:形成历史,密度曲线,旋转和形状

Dark Matter Halos in Interacting Dark Energy Models: Formation History, Density Profile, Spin and Shape

论文作者

Liu, Yun, Liao, Shihong, Liu, Xiangkun, Zhang, Jiajun, An, Rui, Fan, Zuhui

论文摘要

考虑到暗能量与暗物质之间相互作用的相互作用的暗能量(IDE)模型提供了一种自然机制来减轻巧合问题,并且还可以缓解$λ$ CDM模型下的观察性张力。先前的研究通过观察宇宙扩张历史,宇宙微波背景和大规模结构对IDE模型构成了限制。但是,这些数据还不足以有效地将IDE模型与$λ$ CDM区分开。由于非线性结构形成包含丰富的宇宙学信息,因此可以提供其他方式来区分替代模型。在本文中,基于IDE模型的一组$ n $ body模拟,我们研究了暗物质晕圈的形成历史和特性,并与其$λ$ CDM对应物进行了比较。对于暗物质腐烂到暗能量的模型,参数是先前约束的最佳拟合值,结构的形成显着减慢,而光晕在系统上降低了质量,更宽松的内部结构,更高的自旋和各向异性。这与观察到的结构形成不一致,因此可以从非线性结构形成的角度安全地排除该模型。此外,我们发现IDE和$λ$ CDM之间的光环浓度的比率敏感地取决于相互作用参数,并且独立于光晕质量。这可以充当约束IDE模型的强大探针。我们的结果具体地表明,两个黑暗成分的相互作用可能会大大影响光环的形成,因此非线性结构的约束是必不可少的。

The interacting dark energy (IDE) model, which considers the interaction between dark energy and dark matter, provides a natural mechanism to alleviate the coincidence problem and can also relieve the observational tensions under the $Λ$CDM model. Previous studies have put constraints on IDE models by observations of cosmic expansion history, cosmic microwave background and large-scale structures. However, these data are not yet enough to distinguish IDE models from $Λ$CDM effectively. Because the non-linear structure formation contains rich cosmological information, it can provide additional means to differentiate alternative models. In this paper, based on a set of $N$-body simulations for IDE models, we investigate the formation histories and properties of dark matter halos, and compare with their $Λ$CDM counterparts. For the model with dark matter decaying into dark energy and the parameters being the best-fit values from previous constraints, the structure formation is markedly slowed down, and the halos have systematically lower mass, looser internal structure, higher spin and anisotropy. This is inconsistent with the observed structure formation, and thus this model can be safely ruled out from the perspective of non-linear structure formation. Moreover, we find that the ratio of halo concentrations between IDE and $Λ$CDM counterparts depends sensitively on the interaction parameter and is independent of halo mass. This can act as a powerful probe to constrain IDE models. Our results concretely demonstrate that the interaction of the two dark components can affect the halo formation considerably, and therefore the constraints from non-linear structures are indispensable.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源