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首页> 外文期刊>The Astrophysical journal >WHY ARE MASSIVE BLACK HOLES SMALL IN DISK GALAXIES?
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WHY ARE MASSIVE BLACK HOLES SMALL IN DISK GALAXIES?

机译:为什么磁盘星系中的黑洞很小?

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摘要

A potential mechanism is proposed to account for the fact that supermassive black holes (SMBHs) in disk galaxies appear to be smaller than those in elliptical galaxies in the same luminosity range. We consider the formation of SMBHs by radiation drag (the Poynting-Robertson effect), which extracts angular momentum from interstellar matter and thereby drives the mass accretion onto a galactic center. In particular, we quantitatively scrutinize the efficiency of radiation drag in a galaxy composed of bulge and disk, and we elucidate the relation between the final mass of SMBH and the bulge-to-disk ratio of the galaxy. As a result, it is found that the BH-to-galaxy mass ratio, M_(BH)/M_(galaxy), decreases with a smaller bulge-to-disk ratio, because of the effects of geometrical dilution and opacity, and is reduced maximally by 2 orders of magnitude, resulting in M_(BH)/M_(galaxy) ≈ 10~(-5). In contrast, if only the bulge components in galaxies are focused, the BH-to-bulge mass ratio becomes M_(BH)/M_(bulge) ≈ 10~(-3), which is similar to that found in elliptical galaxies. Thus, it turns out that the mass of an SMBH primarily correlates with a bulge, not with a disk, consistent with observational data.
机译:提出了一种潜在的机制来解释以下事实:在相同的亮度范围内,圆盘星系中的超大质量黑洞(SMBH)看上去比椭圆形星系中的小。我们考虑通过辐射阻力(Poynting-Robertson效应)形成SMBHs,它从星际物质中提取角动量,从而将质量积聚驱动到银河系中心。特别是,我们定量检查了由凸出部分和圆盘组成的星系中的辐射阻力效率,并阐明了SMBH的最终质量与星系的凸出部分与圆盘之比之间的关系。结果发现,由于几何稀释和不透明度的影响,BH与星系的质量比M_(BH)/ M_(星系)随着凸出比的减小而减小,并且最大减少2个数量级,导致M_(BH)/ M_(galaxy)≈10〜(-5)。相反,如果仅聚焦星系中的凸起部分,则BH与凸起的质量比将变为M_(BH)/ M_(bulge)≈10〜(-3),这与椭圆形星系中的相似。因此,事实证明,与观测数据一致,SMBH的质量主要与凸起相关,而不与磁盘相关。

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