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CLOSE NEIGHBORS OF MARKARIAN GALAXIES. II. STATISTICS AND DISCUSSIONS

机译:马尔加里星系的近邻。二。统计与讨论

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According to the database from the first paper, we selected 180 pairs with dV < 800 km s-1 and Dp < 60 kpc containing Markarian (MRK) galaxies. We studied the dependence of galaxies' integral parameters, star-formation (SF), and active galactic nuclei (AGN) properties on kinematics of pairs, their structure, and large-scale environments. The following main results were obtained: projected radial separation Dp between galaxies correlates with the perturbation level P of the pairs. Both parameters do not correlate with line-of-sight velocity difference dV of galaxies. Dp and P are better measures of interaction strength than dV. The latter correlates with the density of large-scale environment and with the morphologies of galaxies. Both galaxies in a pair are of the same nature; the only difference is that MRK galaxies are usually brighter than their neighbors on average by 0.9 mag. Specific star formation rates (SSFR) of galaxies in pairs with smaller Dp or dV is on average 0.5 dex higher than that of galaxies in pairs with larger Dp or dV. Closeness of a neighbor with the same and later morphological type increases the SSFR, while earlier-type neighbors do not increase SSFR. Major interactions/mergers trigger SF and AGN more effectively than minor ones. The fraction of AGNs is higher in more perturbed pairs and pairs with smaller Dp. AGNs typically are in stronger interacting systems than star-forming and passive galaxies. There are correlations of both SSFRs and spectral properties of nuclei between pair members.
机译:根据第一篇论文中的数据库,我们选择了dV <800 km s-1和Dp <60 kpc的180对,其中包含Markarian(MRK)星系。我们研究了星系的积分参数,恒星形成(SF)和主动银河核(AGN)属性对对的运动学,其结构和大规模环境的依赖性。获得了以下主要结果:星系之间的预计径向间隔Dp与这对星系的摄动水平P相关。这两个参数都与星系的视线速度差dV不相关。与dV相比,Dp和P是更好的相互作用强度的量度。后者与大规模环境的密度以及星系的形态有关。成对的两个星系具有相同的性质;唯一的区别是MRK星系通常平均比相邻星系亮0.9 mag。 Dp或dV较小的成对星系的比星形成率(SSFR)平均比Dp或dV大的成对星系的比星形成率平均高0.5 dex。具有相同和较新的形态类型的邻居的紧密度会增加SSFR,而较早类型的邻居不会增加SSFR。主要的互动/合并比次要的互动/合并更有效地触发了SF和AGN。在扰动更多的对和Dp较小的对中,AGN的比例更高。与恒星和被动星系相比,AGN通常在更强大的交互系统中。配对成员之间的SSFR和原子核的光谱特性均相关。

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