首页> 外文期刊>The Astrophysical journal >A RADIAL VELOCITY TEST FOR SUPERMASSIVE BLACK HOLE BINARIES AS AN EXPLANATION FOR BROAD, DOUBLE-PEAKED EMISSION LINES IN ACTIVE GALACTIC NUCLEI
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A RADIAL VELOCITY TEST FOR SUPERMASSIVE BLACK HOLE BINARIES AS AN EXPLANATION FOR BROAD, DOUBLE-PEAKED EMISSION LINES IN ACTIVE GALACTIC NUCLEI

机译:超大质量黑洞双星径向速度试验解释有源银河系核中的双排双辐射线

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One of the proposed explanations for the broad, double-peaked Balmer emission lines observed in the spectra of some active galactic nuclei (AGNs) is that they are associated with sub-parsec supermassive black hole (SMBH) binaries. Here, we test the binary broad-line region hypothesis through several decades of monitoring of the velocity structure of double-peaked Hα emission lines in 13 low-redshift, mostly radio-loud AGNs. This is a much larger set of objects compared to an earlier test by Eracleous et al. and we use much longer time series for the three objects studied in that paper. Although systematic changes in radial velocity can be traced in many of their lines, they are demonstrably not like those of a spectroscopic binary in a circular orbit. Any spectroscopic binary period must therefore be much longer than the span of the monitoring (assuming a circular orbit), which in turn would require black hole masses that exceed by 1–2 orders of magnitude the values obtained for these objects using techniques such as reverberation mapping and stellar velocity dispersion. Moreover, the response of the double-peaked Balmer line profiles to fluctuations of the ionizing continuum and the shape of the Lyα profiles are incompatible with an SMBH binary. The binary broad-line region hypothesis is therefore disfavored. Other processes evidently shape these line profiles and cause the long-term velocity variations of the double peaks.
机译:在某些活动星系核(AGN)的光谱中观察到的宽,双峰Balmer发射谱线的拟议解释之一是,它们与亚视差超大规模黑洞(SMBH)双星相关。在这里,我们通过对13个低红移,大部分为无线电响的AGN中双峰Hα发射线的速度结构进行了几十年的监测,测试了二元宽线区域假设。与Eracleous等人的早期测试相比,这是一组更大的对象。并且我们对该论文中研究的三个对象使用了更长的时间序列。尽管可以在许多直线上追踪到径向速度的系统变化,但是它们显然不像圆形轨道上的光谱双星那样。因此,任何光谱的二进制周期都必须长于监视范围(假设是圆形轨道),这反过来又需要黑洞质量超过使用混响等技术为这些物体获得的值的1-2个数量级。映射和恒星速度色散。此外,双峰巴尔默谱线轮廓对电离连续谱波动和Lyα轮廓形状的响应与SMBH二元不兼容。因此,二元宽线区域假设不成立。其他过程显然会影响这些线的轮廓,并导致双峰的长期速度变化。

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