论文标题

矮人卫星系统的径向分布

Radial Distributions of Dwarf Satellite Systems in the Local Volume

论文作者

Carlsten, Scott G., Greene, Jenny E., Peter, Annika H. G., Greco, Johnny P., Beaton, Rachael L.

论文摘要

低质量卫星在银河系(MW)样宿主周围的径向空间分布是模拟小规模结构的重要基准。该分布对中央磁盘破坏Subhalos是敏感的,可以指示在MW类似物的模拟中观察到的破坏是人造的(即数字)还是物理起源。我们考虑了12个在本地卷中的12个含MW的主机的卫星系统的样本,这些卫星系统已完成为$ m_v <-9 $,并且在150个投影KPC之内。我们研究了卫星的径向分布,并与$λ$ CDM宇宙学模拟进行了比较,包括大盒宇宙学模拟和MW大小晕圈模拟中的高分辨率变焦。我们发现观察到的卫星比模拟系统明显更集中。包括MW在内的几个观察到的宿主是相对于模拟主机过于浓缩的$ \sim2σ$异常值,而观察到的宿主都没有比模拟较少的集中浓缩。对于测量径向浓度的不同方式,该结果是可靠的。我们发现,这种差异对于明亮的$ M_V <-12 $卫星更为重要,暗示这不是观察性不完整的结果。我们认为,差异可能是由于模拟中的人为破坏所致,但是,如果是的,这对于通过观察到的卫星丰富的卫星允许在低质量政权中允许使用恒星对halo的质量关系的重要影响。

The radial spatial distribution of low-mass satellites around a Milky Way (MW)-like host is an important benchmark for simulations of small-scale structure. The distribution is sensitive to the disruption of subhalos by the central disk and can indicate whether the disruption observed in simulations of MW analogs is artificial (i.e., numeric) or physical in origin. We consider a sample of 12 well-surveyed satellite systems of MW-like hosts in the Local Volume that are complete to $M_V<-9$ and within 150 projected kpc. We investigate the radial distribution of satellites and compare with $Λ$CDM cosmological simulations, including big-box cosmological simulations and high resolution zoom in simulations of MW sized halos. We find that the observed satellites are significantly more centrally concentrated than the simulated systems. Several of the observed hosts, including the MW, are $\sim2σ$ outliers relative to the simulated hosts in being too concentrated, while none of the observed hosts are less centrally concentrated than the simulations. This result is robust to different ways of measuring the radial concentration. We find that this discrepancy is more significant for bright, $M_V<-12$ satellites, suggestive that this is not the result of observational incompleteness. We argue that the discrepancy is possibly due to artificial disruption in the simulations, but, if so, this has important ramifications for what stellar to halo mass relation is allowed in the low-mass regime by the observed abundance of satellites.

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