论文标题

与Hestia的各向异性卫星积聚

Anisotropic satellite accretion onto the Local Group with HESTIA

论文作者

Dupuy, Alexandra, Libeskind, Noam I., Hoffman, Yehuda, Courtois, Hélène M., Gottlöber, Stefan, Grand, Robert J. J., Knebe, Alexander, Sorce, Jenny G., Tempel, Elmo, Tully, R. Brent, Vogelsberger, Mark, Wang, Peng

论文摘要

宇宙网络如何进食光环和燃料银河形成是一个具有广泛含义的开放问题。这项研究通过使用限制以重现本地环境的模拟来探索本地宇宙学的质量组合。这项研究的目的是检查卫星在银河系和仙女座星系上的积聚方向是否与宇宙网络有关。该分析考虑了Hestia模拟套件中可用的三个高分辨率模拟,以及衍生的速度剪切和潮汐张量。我们注意到本地集团积聚历史上的两个时代,由$ z \左右的时代划定约0.7 $。我们还发现,在越过其病毒半径$ r_ {200} $之前,卫星最多可达$ \ sim 4 $ mpc。最后,我们观察到潮汐和剪切张量的最缓慢倒塌的轴与最慢的倒塌$ \ vec {e_3} $的轴的紧密结合,这意味着本地群体的卫星来自宇宙网的一个特定区域,起源于我们的一个特定区域,并通过收获的过程向我们传播。

How the cosmic web feeds halos, and fuels galaxy formation is an open question with wide implications. This study explores the mass assembly in the Local Group within the context of the local cosmography by employing simulations whose initial conditions have been constrained to reproduce the local environment. The goal of this study is to inspect whether the direction of accretion of satellites on to the Milky Way and Andromeda galaxies, is related to the cosmic web. The analysis considers the three high-resolution simulations available in the HESTIA simulation suite, as well as the derived velocity shear and tidal tensors. We notice two eras in the Local Group accretion history, delimited by an epoch around $z \approx 0.7$. We also find that satellites can travel up to $\sim 4$ Mpc, relative to their parent halo before crossing its viral radius $R_{200}$. Finally, we observe a strong alignment of the infall direction with the axis of slowest collapse $\vec{e_3}$ of both tidal and shear tensors, implying satellites of the Local Group originated from one particular region of the cosmic web and were channeled towards us via the process of accretion.This alignment is dominated by the satellites that enter during the early infall era, i.e $z>0.7$.

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