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The Formation of Fossil Galaxy Groups in the hierarchical Universe

机译:等级宇宙中化石星系群的形成

摘要

We use a set of twelve high-resolution N-body/hydrodynamical simulations in the $Lambda$CDM cosmology to investigate the origin and formation rate of fossil groups (FGs), which are X-ray bright galaxy groups dominated by a large elliptical galaxy, with the second brightest galaxy being at least two magnitudes fainter. The simulations invoke star formation, chemical evolution with non-instantaneous recycling, metal dependent radiative cooling, strong star burst driven galactic super winds, effects of a meta-galactic UV field and full stellar population synthesis. We find an interesting correlation between the magnitude gap between the first and second brightest galaxy and the formation time of the group. It is found that FGs have assembled half of their final dark matter mass already at $zga1$, and subsequently typically grow by minor merging only, wheras non-FGs on average form later. The early assembly of FGs leaves sufficient time for galaxies of $L sim L_*$ to merge into the central one by dynamical friction, resulting in the large magnitude gap at $z=0$. A fraction of 33$pm$16% of the groups simulated are found to be fossil, whereas the observational estimate is $sim$10-20%. The FGs are found to be X-ray over-luminous relative to non-FGs of the same optical luminosity, in qualitative agreement with observations. Finally, from a dynamical friction analysis is found that only because infall of $L sim L_*$ galaxies happens along filaments with small impact parameters do FGs exist at all.
机译:我们在$ Lambda $ CDM宇宙学中使用一组十二个高分辨率N体/流体动力学模拟来研究化石群(FG)的起源和形成速度,这些化石群是由大椭圆形占主导的X射线明亮星系群银河系,第二最亮的银河系至少暗淡两个量级。这些模拟调用了恒星形成,具有非瞬时循环的化学演化,依赖金属的辐射冷却,强恒星爆发驱动的银河超风,超银河紫外线场的影响以及完整的恒星族合成。我们发现第一个和第二个最亮星系之间的幅度差距与该星团的形成时间之间存在有趣的关联。已经发现,FG已经将其最终暗物质质量的一半组装成z ga1 $,随后通常仅通过较小的合并而增长,而后来的非FG则以平均形式出现。 FG的早期组装为$ L sim L _ * $的星系留出了足够的时间通过动摩擦合并到中心星系,从而在$ z = 0 $时产生了较大的量级缺口。发现33% pm $ 16%的模拟组中有小部分是化石,而观测估计值为$ sim $ 10-20%。相对于具有相同光学发光度的非FG,FG被发现是X射线超光的,这在质量上与观察结果一致。最后,从动摩擦分析中发现,仅由于冲击参数较小的细丝发生$ L sim L _ * $星系的倒塌,才存在FG。

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