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Gemini Multi-Object Spectrograph Integral Field Unit Spectroscopy of the Double-peaked Broad Emission Line of a Red Active Galactic Nucleus

机译:Gemini多物体光谱仪整体场单位单位单位单位单位单位光谱,红极活性银核的双峰宽排放线

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Galaxy mergers are expected to produce multiple supermassive black holes (SMBHs) in close-separation, but the detection of such SMBHs has been difficult. 2MASS J165939.7?+?183436 is a red active galactic nucleus (AGN) that is a prospective merging SMBH candidate owing to its merging features in Hubble Space Telescope imaging and double-peaked broad emission lines (BELs). Herein, we report a Gemini Multi-Object Spectrograph Integral Field Unit observation of a double-peaked broad Hα line of 2MASS J165939.7+183436. Furthermore, we confirm the existence of two BEL peaks that are kinematically separated by 3000 km s~(?1), with the SMBH of each BEL component weighing at and , if they arise from independent BELs near the two SMBHs. The BEL components were not separated at >01; however, under several plausible assumptions regarding the fitting of each spaxel, the two components are found to be spatially separated at 0085 (~250 pc). Different assumptions for the fitting can lead to a null (<005) or a larger spatial separation (~015). Given the uncertainty regarding the spatial separation, various models, such as the disk emitter and multiple SMBH models, are viable solutions to explain the double BEL components. These results will promote future research for finding more multiple SMBH systems in red AGNs, and higher-resolution imaging validates these different models.
机译:预计Galaxy Mergers将在密切分离中产生多个超大性黑洞(SMBH),但是这种SMBH的检测很困难。 2MASS J165939.7?+ 183436是一种红色活跃的银核(AGN),它是由于其哈勃太空望远镜成像和双峰宽排放线(BEL)中的合并特征而言是一个未来的SMBH候选。在此,我们报告了双峰宽Hα线2mass J165939.7 + 183436的双峰宽Hα线的半峰多物体光谱仪积分场单元观察。此外,我们确认了两个运动峰的存在,这些Bel峰值在3000公里的3000公里的〜(?1)中,每个Bel组件的SMBH在称重,如果它们来自两个SMBH附近的独立布莱斯。 BEL组件在> 01处不分开;然而,在关于每个Spaxel的配合的若干合理的假设下,发现两个组分在0085(〜250pc)下在空间上分离。拟合的不同假设可以导致空(<005)或更大的空间分离(〜015)。鉴于空间分离的不确定性,各种型号,如磁盘发射器和多个SMBH型号,是可行的解决方案来解释双BEL组件。这些结果将促进未来的研究在红色AGN中查找更多的SMBH系统,更高分辨率的成像验证这些不同的模型。

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