论文标题

NGC 4104:形成化石组的壳星系

NGC 4104: a shell galaxy in a forming fossil group

论文作者

Neto, G. B. Lima, Durret, F., Laganá, T. F., Machado, R. E. G., Martinet, N., Cuillandre, J. -C., Adami, C.

论文摘要

组是宇宙中最常见的星系关联,在不同的配置状态(例如松散,紧凑和化石组)中发现。我们研究了Galaxy组MKW 4S,以Z = 0.0282的巨型早期型Galaxy NGC 4104主导。我们的目的是了解该群体的进化阶段,并将其置于标准LambDACDM宇宙学场景的框架内。我们已经使用CFHT/MEGACAM(G和R频段)获得了深度的光学数据,并且我们同时应用了Galfit 2D图像拟合程序和IRAF/Ellipse 1D Radial方法,以建模最亮的组星系(BGG)及其扩展的星际信封。我们还分析了公开可用的XMM-Newton和Chandra X射线数据。从内向星系的质量比不同的质量比的N体模拟中,我们可以限制该系统的动态阶段。我们的结果显示了NGC 4104中的出色外壳系统功能,以及一个扩展的包络,该包膜是由我们对大约4--6 Gyr碰撞的数值模拟与卫星星系碰撞的复制。初始星系的质量比至少为1:3。考虑到对总R带量和X射线发光度的出色包膜的贡献,MKW 4S属于化石组的类别。我们的结果表明,我们目睹了形成化石组中壳椭圆星系的罕见情况。

Groups are the most common association of galaxies in the Universe, found in different configuration states such as loose, compact and fossil groups. We have studied the galaxy group MKW 4s, dominated by the giant early-type galaxy NGC 4104 at z=0.0282. Our aim was to understand the evolutionary stage of this group and to place it within the framework of the standard LambdaCDM cosmological scenario. We have obtained deep optical data with CFHT/Megacam (g and r bands) and we have applied both the galfit 2D image fitting program and the IRAF/ellipse 1D radial method to model the brightest group galaxy (BGG) and its extended stellar envelope. We have also analysed publicly available XMM-Newton and Chandra X-ray data. From N-body simulations of dry-mergers with different mass ratios of the infalling galaxy, we could constrain the dynamical stage of this system. Our results show a stellar shell system feature in NGC 4104 and an extended envelope that was reproduced by our numerical simulations of a collision with a satellite galaxy about 4--6 Gyr ago. The initial pair of galaxies had a mass ratio of at least 1:3. Taking into account the stellar envelope contribution to the total r band magnitude and the X-ray luminosity, MKW 4s falls into the category of a fossil group. Our results show that we are witnessing a rare case of a shell elliptical galaxy in a forming fossil group.

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