论文标题
下一代处女座集群调查。 xxxiii。处女座群集核心球状群集系统中的恒星种群梯度
The Next Generation Virgo Cluster Survey. XXXIII. Stellar Population Gradients in the Virgo Cluster Core Globular Cluster System
论文作者
论文摘要
我们介绍了处女座集群核心的球状簇(GC)恒星种群的研究,其均匀的光谱目录在主要轴距离$ r _ {\ rm maj} = $ 840 kpc中的主要轴距离内692 GC。我们使用其共同添加的光谱研究了平均年龄,总金属性,[Fe/H]和$α$元素丰度的径向和方位角变化,并使用其共同添加的光谱进行了蓝色(金属贫困)和红色(金属富含金属)GC的径向变化。我们发现,蓝色GC在$ r _ {\ rm maj} = $ 165 kpc之内的[z/h]中具有陡峭的径向梯度,与[fe/h]和[$α$/fe]和[$α$/fe]的贡献大致相等。相比之下,红色GC在[Z/H]中显示出较浅的梯度,这完全由[Fe/H]驱动。我们使用GC标记的Illustris模拟来证明一种积聚场景,在该场景中,比较小的大型卫星更大的卫星(具有更多的金属和$α$ -rich GC)进一步沉入了中央星系中,并且由于低质量dwarfs在较大的距离下的低gc占用分数而发生的梯度变平。 M87周围的密集环境也可能导致蓝GC的陡峭[$α$/fe]梯度,反映了矮星系中看到的东西。红色GC的祖细胞的质量比蓝色GC的质量较窄,这使其梯度较浅。我们还探索了GC丰度中的空间不均匀性,发现M87西北的红色GC略富含金属。 GC恒星人口梯度的未来观察将是光晕合并历史的有用诊断。
We present a study of the stellar populations of globular clusters (GCs) in the Virgo Cluster core with a homogeneous spectroscopic catalog of 692 GCs within a major axis distance $R_{\rm maj} = $ 840 kpc from M87. We investigate radial and azimuthal variations in the mean age, total metallicity, [Fe/H], and $α$-element abundance, of blue (metal-poor) and red (metal-rich) GCs using their co-added spectra. We find that the blue GCs have a steep radial gradient in [Z/H] within $R_{\rm maj} =$ 165 kpc, with roughly equal contributions from [Fe/H] and [$α$/Fe], and flat gradients beyond. By contrast, the red GCs show a much shallower gradient in [Z/H], which is entirely driven by [Fe/H]. We use GC-tagged Illustris simulations to demonstrate an accretion scenario where more massive satellites (with more metal- and $α$-rich GCs) sink further into the central galaxy than less massive ones, and where the gradient flattening occurs because of the low GC occupation fraction of low-mass dwarfs disrupted at larger distances. The dense environment around M87 may also cause the steep [$α$/Fe] gradient of the blue GCs, mirroring what is seen in the dwarf galaxy population. The progenitors of red GCs have a narrower mass range than those of blue GCs, which makes their gradients shallower. We also explore spatial inhomogeneity in GC abundances, finding that the red GCs to the northwest of M87 are slightly more metal-rich. Future observations of GC stellar population gradients will be useful diagnostics of halo merger histories.