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Symphony: Cosmological Zoom-in Simulation Suites over Four Decades of Host Halo Mass

The Astrophysical Journal(2023)

Carnegie Observ | Stanford Univ | Indian Inst Sci Educ & Res | Univ Utah | Boise State Univ

Cited 6|Views67
Abstract
We present Symphony, a compilation of 262 cosmological, cold-dark-matter-only zoom-in simulations spanning four decades of host halo mass, from 1011–1015 M ⊙. This compilation includes three existing simulation suites at the cluster and Milky Way–mass scales, and two new suites: 39 Large Magellanic Cloud-mass (1011 M ⊙) and 49 strong-lens-analog (1013 M ⊙) group-mass hosts. Across the entire host halo mass range, the highest-resolution regions in these simulations are resolved with a dark matter particle mass of ≈3 × 10−7 times the host virial mass and a Plummer-equivalent gravitational softening length of ≈9 × 10−4 times the host virial radius, on average. We measure correlations between subhalo abundance and host concentration, formation time, and maximum subhalo mass, all of which peak at the Milky Way host halo mass scale. Subhalo abundances are ≈50% higher in clusters than in lower-mass hosts at fixed sub-to-host halo mass ratios. Subhalo radial distributions are approximately self-similar as a function of host mass and are less concentrated than hosts’ underlying dark matter distributions. We compare our results to the semianalytic model Galacticus, which predicts subhalo mass functions with a higher normalization at the low-mass end and radial distributions that are slightly more concentrated than Symphony. We use UniverseMachine to model halo and subhalo star formation histories in Symphony, and we demonstrate that these predictions resolve the formation histories of the halos that host nearly all currently observable satellite galaxies in the universe. To promote open use of Symphony, data products are publicly available at http://web.stanford.edu/group/gfc/symphony.
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Dark matter,Galaxy abundances,N-body simulations,Galaxy dark matter halos,Computational methods
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要点】:本文介绍了Symphony项目,包含262个宇宙学冷暗物质仅有模拟,跨越四个十年量级的主晕质量范围,揭示了子晕丰度与主晕质量、形成时间、最大子晕质量之间的相关性,并对比了半解析模型的结果,为理解宇宙卫星星系的宿主晕形成历史提供了重要依据。

方法】:研究通过构建包含不同质量尺度主晕的冷暗物质仅有宇宙学模拟,采用高分辨率模拟技术,分析子晕与主晕的关联性。

实验】:Symphony项目包含三个现有模拟套件(针对星团和银河系质量尺度)以及两个新的模拟套件(39个LMC质量模拟和49个强引力透镜模拟),使用平均 dark matter particle mass 为 ≈3 × 10^−7 主晕Virial质量,以及 ≈9 × 10^−4 主晕Virial半径的Plummer等效引力软化长度,模拟结果与Galacticus半解析模型进行了对比,并通过UniverseMachine模型模拟了晕和子晕的恒星形成历史。数据产品已公开提供。