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Angular Momentum and Galaxy Formation Revisited: Scaling Relations for Disks and Bulges

机译:角动量和银河系形成的再探讨:磁盘和凸起的比例关系。

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We show that the stellar specific angular momentum j, mass M, and bulge fraction of normal galaxies of all morphological types are consistent with a simple model based on a linear superposition of independent disks and bulges. In this model, disks and bulges follow scaling relations of the form and with but offset from each other by a factor of 8?±?2 over the mass range . Separate fits for disks and bulges alone give and , respectively. This model correctly predicts that galaxies follow a curved 2D surface in the 3D space of , , and . We find no statistically significant indication that galaxies with classical and pseudo bulges follow different relations in this space, although some differences are permitted within the observed scatter and the inherent uncertainties in decomposing galaxies into disks and bulges. As a byproduct of this analysis, we show that the j–M scaling relations for disk-dominated galaxies from several previous studies are in excellent agreement with each other. In addition, we resolve some conflicting claims about the dependence of the j–M scaling relations. The results presented here reinforce and extend our earlier suggestion that the distribution of galaxies with different in the j–M diagram constitutes an objective, physically motivated alternative to subjective classification schemes such as the Hubble sequence.
机译:我们显示,所有形态类型的正常星系的恒星比角动量j,质量M和凸起分数与基于独立盘和凸起的线性叠加的简单模型一致。在该模型中,圆盘和凸出部分遵循以下形式的比例关系,并且在整个质量范围内相互偏移8?±?2倍。圆盘和凸出的单独配合分别给出和。此模型可以正确预测星系在,和的3D空间中遵循曲面2D曲面。我们没有发现具有统计意义的迹象,尽管在观察到的散射范围内允许存在一些差异,而且在将星系分解为圆盘和凸起时存在固有的不确定性,但具有经典凸起和拟凸起的星系在该空间中遵循不同的关系。作为此分析的副产品,我们证明了来自先前几项研究的以磁盘为主导的星系的j–M比例关系彼此之间非常吻合。此外,我们解决了关于j–M缩放关系的依赖性的一些相互矛盾的主张。此处提出的结果加强并扩展了我们先前的建议,即j–M图中具有不同星系的分布构成了客观,物理动机替代主观分类方案(如哈勃序列)的方法。

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