论文标题

Elaphrocentre在空白星系中的作用

The role of the elaphrocentre in void galaxy formation

论文作者

Peper, Marius, Roukema, Boudewijn F.

论文摘要

空隙可能会通过减弱质量中心或增加磁盘大小来影响星系形成,这可能在巨大的低表面亮度星系(LSBG)的形成中起作用。如果在对应于宇宙网络的潜在山丘上形成暗物质光环,我们表示与重中心相比,我们表示“ Elaphrocentre”,那么与BaryCentres相比,Elaphrocentre应削弱对光环的漏洞。我们通过数值研究了这一假设。我们提出了一条完整的软件管道,以模拟星系形成,从初始扰动的功率谱和N体模拟到基于合并历史的质量树的质量群体中心历史。该管道是建立在公认的,自由许可的宇宙学软件包中的,其目标是高度便携式的长期可重复性。我们发现,倾向于反对质量中心的Elaphropentric加速度是适中的。我们找不到在空隙或以弹性位置的位置的迹象,从而削弱了质量中的质量插入到银河系上。但是,我们发现影响星系形成的空隙的间接证据:与高密度环境中星系相比,空隙星系的质量较低,但它们的自旋参数通常较高。对于固定质量,隐含的磁盘尺度长度将更大。发现空隙中的切向加速度很高,可能会显着有助于更高的自旋参数。我们发现以后的空隙星系时期的形成时期。这应该给出较低的物质密度,并可能意味着磁盘星系的表面密度较低。因此,空心星系具有较高的自旋参数和以后的形成时期。两者都是可能增加空隙中LSBG的概率的因素。

Voids may affect galaxy formation via weakening mass infall or increasing disk sizes, which could potentially play a role in the formation of giant low surface brightness galaxies (LSBGs). If a dark matter halo forms at the potential hill corresponding to a void of the cosmic web, which we denote the 'elaphrocentre' in contrast to a barycentre, then the elaphrocentre should weaken the infall rate to the halo when compared to infall rates towards barycentres. We investigate this hypothesis numerically. We present a complete software pipeline to simulate galaxy formation, starting from a power spectrum of initial perturbations and an N-body simulation through to merger-history-tree based mass infall histories. The pipeline is built from well-established, free-licensed cosmological software packages, and aims at highly portable long-term reproducibility. We find that the elaphrocentric accelerations tending to oppose mass infall are modest. We do not find evidence of location in a void or elaphrocentric position weakening mass infall towards a galaxy. However, we find indirect evidence of voids influencing galaxy formation: while void galaxies are of lower mass compared to galaxies in high density environments, their spin parameters are typically higher. For a fixed mass, the implied disk scale length would be greater. Tangential accelerations in voids are found to be high and might significantly contribute to the higher spin parameters. We find significantly later formation epochs for void galaxies; this should give lower matter densities and may imply lower surface densities of disk galaxies. Thus, void galaxies have higher spin parameters and later formation epochs; both are factors that may increase the probability of forming LSBGs in voids.

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