首页> 外文OA文献 >Evolution along the sequence of S0 Hubble types induced by dry minor mergers II. Bulge-disk coupling in the photometric relations through merger-induced internal secular evolution
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Evolution along the sequence of S0 Hubble types induced by dry minor mergers II. Bulge-disk coupling in the photometric relations through merger-induced internal secular evolution

机译:干小合并引起的沿S0哈勃类型序列的演化II。通过合并引起的内部长期演化,光度关系中的凸圆盘耦合

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摘要

Context. Galaxy mergers are widely discussed as one possible evolution mechanism for lenticular galaxies (S0s), because even minor mergers induce structural changes that are difficult to reconcile with the strong bulge-disk coupling observed in the photometric scaling relations of these galaxies. Aims. We check if the evolution induced onto S0s by dry intermediate and minor mergers can reproduce the S0 photometric scaling relations. Methods. We analyse the bulge-disk decompositions of the collisionless N-body simulations of intermediate and minor mergers onto S0s presented previously to determine the evolution induced by the mergers in several relevant photometric planes. Results. The mergers induce an evolution in the photometric planes that is compatible with the data of S0s, even in the relations that indicate a strong bulge-disk coupling. Mergers drive the formation of the observed photometric relation in some cases and induce a slight dispersion compatible with data in others. Therefore, this evolutionary mechanism tends to preserve the observational photometric relations. In the photometric planes where the morphological types segregate, the mergers always induce evolution towards the region populated by S0s. No clear trends with the mass ratio of the encounter, the central satellite density, or the spin-orbit coupling are found for the range of values studied. Long-pericentre orbits generate more concentrated disks and expanded bulges than initially, while short-pericentre orbits do the opposite. The structural coupling of the bulge and the disk is preserved or reinforced in the models because mergers trigger internal secular processes in the primary disk that induce significant bulge growth. This happens even though the encounters do not induce bars in the disks. Conclusions. Intermediate and minor mergers can be considered to be plausible mechanisms for the evolution of S0s if one includes their photometric scaling relations, because they can preserve and even strengthen any pre-existing structural bulge-disk coupling by triggering significant internal secular evolution, even without bars or dissipational effects. Satellite accretions thus seem to unavoidably entail internal secular evolution, meaning that it may be quite complex to isolate the effects of the internal secular evolution driven by mergers from the one due to purely intrinsic disk instabilities in individual early-type disks at the present.
机译:上下文。银河合并被广泛​​讨论为透镜状星系(S0)的一种可能的演化机制,因为即使很小的合并也会引起结构变化,而这些变化很难与在这些星系的光度标度关系中观察到的强烈凸出盘耦合相协调。目的我们检查是否由干燥的中间和次要合并诱发的SO演化可以重现SO的光度标度关系。方法。我们分析了中间合并和次要合并的无碰撞N体模拟到S0上的凸起盘分解,以确定在几个相关的光度平面上合并引起的演化。结果。合并引起了与S0s数据兼容的光度平面演化,甚至在表明强烈凸起盘耦合的关系中也是如此。合并在某些情况下会推动观察到的光度关系的形成,并在其他情况下会导致与数据兼容的轻微色散。因此,这种进化机制倾向于保留观测光度关系。在形态类型分离的光度平面中,合并总是会导致向由S0填充的区域发展。对于所研究的数值范围,没有发现相遇质量比,中心卫星密度或自旋轨道耦合的明显趋势。长周期轨道比最初产生更多的集中盘和膨胀的凸起,而短周期轨道则相反。在模型中保留或加强了凸出部分和圆盘的结构耦合,因为合并会触发主圆盘中的内部长期过程,从而导致凸出部分显着增长。即使相遇不会在磁盘中引起条纹,也会发生这种情况。结论。如果中间和次要合并包括S0的光度标度关系,则可以认为它们是S0演化的合理机制,因为它们可以通过触发显着的内部长期演化(甚至没有棒)来保存甚至增强任何先前存在的结构性凸出-圆盘耦合。或耗散效应。因此,卫星的增生似乎不可避免地需要内部长期演化,这意味着由于目前单个早期类型磁盘的纯粹内在磁盘不稳定性,将由合并驱动的内部长期演化的影响与从中分离出来可能是相当复杂的。

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