论文标题

对拉格朗日聚类和角动量重建的重建影响

Baryonic Effects on Lagrangian Clustering and Angular Momentum Reconstruction

论文作者

Sheng, Ming-Jie, Yu, Hao-Ran, Li, Sijia, Liao, Shihong, Du, Min, Wang, Yunchong, Wang, Peng, Xu, Kun, Genel, Shy, Irodotou, Dimitrios

论文摘要

最近的研究说明了宇宙结构的角动量与其拉格朗日特性之间的相关性。但是,只能观察到重子,目前尚不清楚它们是否可靠地追踪宇宙角动量。我们使用Illarteristng研究了黑物质,气体和出色的黑龙系统的Lagrangian质量分布,自旋相关性以及暗物质,气体和出色的成分的可预测性,并表明组件之间的原始分离通常很小。在惯性张量的统计学方面,它们的原子胶也相似。在常见的引力电位下,预计它们将发挥相同的潮汐扭矩,并且强烈的自旋相关性不会被非线性进化和复杂的男性效应破坏,如高分辨率的流体动力模拟所证实。我们进一步表明,他们的后期角动量是由总气体,恒星或中央星系追溯到的,可以通过初始扰动可靠地重建。这些结果表明,重建与初始扰动相关的参数和模型可能会使用重型角度臂。

Recent studies illustrate the correlation between the angular momenta of cosmic structures and their Lagrangian properties. However, only baryons are observable and it is unclear whether they reliably trace the cosmic angular momenta. We study the Lagrangian mass distribution, spin correlation, and predictability of dark matter, gas, and stellar components of galaxy-halo systems using IllustrisTNG, and show that the primordial segregations between components are typically small. Their protoshapes are also similar in terms of the statistics of moment of inertia tensors. Under the common gravitational potential they are expected to exert the same tidal torque and the strong spin correlations are not destroyed by the nonlinear evolution and complicated baryonic effects, as confirmed by the high-resolution hydrodynamic simulations. We further show that their late-time angular momenta traced by total gas, stars, or the central galaxies, can be reliably reconstructed by the initial perturbations. These results suggest that baryonic angular momenta can potentially be used in reconstructing the parameters and models related to the initial perturbations.

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