论文标题
用光晕浓度来限制相互作用的暗能模型 - 质量关系
Constraining interacting dark energy models with the halo concentration - mass relation
论文作者
论文摘要
相互作用的暗能量(IDE)模型是一个有前途的替代宇宙学模型,可以通过考虑暗物质与暗能量之间的相互作用来解决微调和巧合问题。先前的研究表明,该模型中暗部门之间的能量交换可以显着影响暗物质光环特性。在这项研究中,利用大量的宇宙学$ n $ body模拟,我们分析了IDE模型中光晕浓度的红移演变 - 质量($ c $ - $ m $)关系,并表明$ c $ -c $ -m $ RELISATION是相互作用强度参数$ξ_2$的敏感代理。此外,我们构建了参数化公式,以量化$ c $ - $ m $关系对$ξ_2$的依赖性,从$ z = 0 $到$ 0.6 $。我们的参数化公式提供了一种有用的工具,可以用观察$ C $ -M $关系约束$ξ_2$。首次尝试,我们使用X射线,重力镜头和星系旋转曲线观察的数据,并在$ξ_2$上获得严格的约束,即$ξ_2= 0.071 \ pm 0.034 $。我们的工作表明,反映光环组装历史的Halo $ C $ -M $关系是限制IDE模型的强大调查。
The interacting dark energy (IDE) model is a promising alternative cosmological model which has the potential to solve the fine-tuning and coincidence problems by considering the interaction between dark matter and dark energy. Previous studies have shown that the energy exchange between the dark sectors in this model can significantly affect the dark matter halo properties. In this study, utilising a large set of cosmological $N$-body simulations, we analyse the redshift evolution of the halo concentration - mass ($c$ - $M$) relation in the IDE model, and show that the $c$ - $M$ relation is a sensitive proxy of the interaction strength parameter $ξ_2$, especially at lower redshifts. Furthermore, we construct parametrized formulae to quantify the dependence of the $c$ - $M$ relation on $ξ_2$ at redshifts ranging from $z=0$ to $0.6$. Our parametrized formulae provide a useful tool in constraining $ξ_2$ with the observational $c$ - $M$ relation. As a first attempt, we use the data from X-ray, gravitational lensing, and galaxy rotational curve observations and obtain a tight constraint on $ξ_2$, i.e. $ξ_2 = 0.071 \pm 0.034$. Our work demonstrates that the halo $c$ - $M$ relation, which reflects the halo assembly history, is a powerful probe to constrain the IDE model.