论文标题

Elucid VII:使用受限的水力模拟探索宇宙网的气体成分

ELUCID VII: Using Constrained Hydro Simulations to Explore the Gas Component of the Cosmic Web

论文作者

Li, Renjie, Wang, Huiyuan, Mo, H. J., Huang, Shuiyao, Katz, Neal, Luo, Xiong, Cui, Weiguang, Li, Hao, Yang, Xiaohu, Jiang, Ning, Zhang, Yuning

论文摘要

使用SDSS调查量中重建的初始条件,我们在代表不同类型的宇宙网络的三个区域进行了受约束的流体动力模拟:星系的昏迷群; SDSS长城; $ z \ sim 0.05 $的大型低密度区域。这些模拟,包括恒星形成和恒星反馈,但没有AGN的形成和反馈,用于研究层间和群集内培养基的特性和进化。大约一半的热层间气体与当地宇宙网络中的细丝有关。大量细丝和光晕的郊区的气体可以通过细丝和光晕的合并产生的吸积冲击来显着加热,并且气温与局部潮汐场的强度之间存在密切的相关性。这些模拟还预测了与冲击前线和接触边缘相关的一些不连续性,可以使用热SZ效应和X射线的观测值对其进行测试。天空的很大一部分被LY $α$和OVI吸收系统覆盖,并且大多数OVI系统和低柱密度HI系统与宇宙网络中的细丝有关。遵循观察到的宇宙网络的形成和加热历史的约束模拟为解释观察数据提供了重要的途径。有了有关要观察到的宇宙气体的起源和位置的完整信息,此类模拟也可以用于制定观察策略。

Using reconstructed initial conditions in the SDSS survey volume, we carry out constrained hydrodynamic simulations in three regions representing different types of the cosmic web: the Coma cluster of galaxies; the SDSS great wall; and a large low-density region at $z\sim 0.05$. These simulations, which include star formation and stellar feedback but no AGN formation and feedback, are used to investigate the properties and evolution of intergalactic and intra-cluster media. About half of the warm-hot intergalactic gas is associated with filaments in the local cosmic web. Gas in the outskirts of massive filaments and halos can be heated significantly by accretion shocks generated by mergers of filaments and halos, respectively, and there is a tight correlation between gas temperature and the strength of the local tidal field. The simulations also predict some discontinuities associated with shock fronts and contact edges, which can be tested using observations of the thermal SZ effect and X-rays. A large fraction of the sky is covered by Ly$α$ and OVI absorption systems, and most of the OVI systems and low-column density HI systems are associated with filaments in the cosmic web. The constrained simulations, which follow the formation and heating history of the observed cosmic web, provide an important avenue to interpret observational data. With full information about the origin and location of the cosmic gas to be observed, such simulations can also be used to develop observational strategies.

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