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Kinematic properties and dark matter fraction of Virgo dwarf early-type galaxies

机译:Virgo矮小早期星系的运动性质和暗物质分数

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What happens to dwarf galaxies as they enter the cluster potential well is one of the main unknowns in studies of galaxy evolution. Several evidence suggests that late-type galaxies enter the cluster and are transformed to dwarf early-type galaxies (dEs). We study the Virgo cluster to understand which mechanisms are involved in this transformation. We find that the dEs in the outer parts of Virgo have rotation curves with shapes and amplitudes similar to late-type galaxies of the same luminosity (Fig. 1). These dEs are rotationally supported, have disky isophotes, and younger ages than those dEs in the center of Virgo, which are pressure supported, often have boxy isophotes and are older (Fig. 1). Ram pressure stripping, thus, explains the properties of the dEs located in the outskirts of Virgo. However, the dEs in the central cluster regions, which have lost their angular momentum, must have suffered a more violent transformation. A combination of ram pressure stripping and harassment is not enough to remove the rotation and the spiral/disky structures of these galaxies. We find that on the the Faber-Jackson and the Fundamental Plane relations dEs deviate from the trends of massive elliptical galaxies towards the position of dark matter dominated systems such as the dwarf spheroidal satellites of the Milky Way and M31. Both, rotationally and pressure supported dEs, however, populate the same region in these diagrams. This indicates that dEs have a non-negligible dark matter fraction within their half light radius.
机译:Dwarf Galaxies在进入群集潜力时会发生什么,是Galaxy演化研究中的主要未知之一。若干证据表明,晚期的星系进入群集,并转变为矮人早期的星系(DES)。我们研究Virgo集群以了解该转换中涉及哪些机制。我们发现,处女座外部部分中的des具有与相同亮度的后型星系类似的形状和幅度的旋转曲线(图1)。这些DES旋转地支持,具有盘性的异常,而且比处女座中心的DES的年轻人,这是受压的压力,通常具有柔软的异常并且较旧(图1)。因此,RAM压力剥离解释了位于处女座郊区的DE的性质。然而,中央集群区的DES丧失了角度,必须遭受更剧烈的转型。 RAM压力剥离和骚扰的组合是不足以去除这些星系的旋转和螺旋/盘结构。我们发现,在Faber-Jackson和基础普通关系中,DES偏离了巨大的椭圆星系朝向暗物质主导的系统的位置,例如银河系和M31的矮种球形卫星。然而,旋转和压力支持的DES填充了这些图中的相同区域。这表明DES在其半光束内具有不可忽略的暗物质分数。

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