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Alignment of galaxies relative to their local environment in SDSS-DR8

机译:星系与他们在SDSS-DR8中的当地环境的对齐

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Aims. We study the alignment of galaxies relative to their local environment in SDSS-DR8 and, using these data, we discuss evolution scenarios for different types of galaxies. Methods. We defined a vector field of the direction of anisotropy of the local environment of galaxies. We summed the unit direction vectors of all close neighbours of a given galaxy in a particular way to estimate this field. We found the alignment angles between the spin axes of disc galaxies, or the minor axes of elliptical galaxies, and the direction of anisotropy. The distributions of cosines of these angles are compared to the random distributions to analyse the alignment of galaxies. Results. Sab galaxies show perpendicular alignment relative to the direction of anisotropy in a sparse environment, for single galaxies and galaxies of low luminosity. Most of the parallel alignment of Scd galaxies comes from dense regions, from 2 ... 3 member groups and from galaxies with low luminosity. The perpendicular alignment of S0 galaxies does not depend strongly on environmental density nor luminosity; it is detected for single and 2 ... 3 member group galaxies, and for main galaxies of 4 ... 10 member groups. The perpendicular alignment of elliptical galaxies is clearly detected for single galaxies and for members of ≤ 10 member groups; the alignment increases with environmental density and luminosity. Conclusions. We confirm the existence of fossil tidally induced alignment of Sab galaxies at low z . The alignment of Scd galaxies can be explained via the infall of matter to filaments. S0 galaxies may have encountered relatively massive mergers along the direction of anisotropy. Major mergers along this direction can explain the alignment of elliptical galaxies. Less massive, but repeated mergers are possibly responsible for the formation of elliptical galaxies in sparser areas and for less luminous elliptical galaxies.
机译:目标。我们在SDSS-DR8中研究了星系相对于当地环境的对齐,并使用这些数据,我们讨论了不同类型的星系的演变情景。方法。我们定义了星系本地环境的各向异性方向的矢量字段。我们以特定方式估计该领域给定的星系的所有闭合邻居的单位方向向量。我们发现椎间盘周到的旋转轴之间的对准角,或椭圆形星系的次轴和各向异性方向。将这些角度的余弦分布与随机分布进行比较,以分析星系的对准。结果。 SAB星系在稀疏环境中相对于各向异性方向显示垂直对齐,用于单个星系和低光度的星系。 SCD星系的大部分平行对准来自致密区域,来自2 ... 3成员组和具有低光度的星系。 S0星系的垂直对准不依赖于环境密度和亮度;它被检测到单身和2 ... 3成员组星系,以及4 ... 10个成员组的主要星系。对于单个星系和≤10个成员组的构件,清楚地检测椭圆星系的垂直对准;对准随着环境密度和亮度而增加。结论。我们在低Z处确认化石的存在性化石诱导的SAB星系对齐。 SCD星系的对准可以通过物质的所有物质到长丝来解释。 S0星系可能沿各向异性方向遇到相对巨大的合并。沿着这个方向的主要合并可以解释椭圆星系的对齐。较少的大规模,但重复的合并可能负责在稀疏区域和较少的发光椭圆星系中形成椭圆星系。

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