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首页> 外文期刊>The Astrophysical Journal. Letters >SPATIALLY RESOLVED SPECTROSCOPY OF SDSS J0952+2552: A CONFIRMED DUAL ACTIVE GALACTIC NUCLEUS
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SPATIALLY RESOLVED SPECTROSCOPY OF SDSS J0952+2552: A CONFIRMED DUAL ACTIVE GALACTIC NUCLEUS

机译:SDSS J0952 + 2552的空间分辨光谱:确认的双活性银河系核

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摘要

Most massive galaxies contain supermassive black holes (SMBHs) in their cores. When galaxies merge, gas is driven to nuclear regions and can accrete onto the central black hole. Thus, one expects to see dual active galactic nuclei (AGNs) in a fraction of galaxy mergers. Candidates for galaxies containing dual AGNs have been identified by the presence of double-peaked narrow [Oiii] emission lines and by high spatial resolution images of close galaxy pairs. Spatially resolved spectroscopy is needed to confirm these galaxy pairs as systems with spatially separated double SMBHs. With the Keck 2 Laser Guide Star Adaptive Optics system and the OH Suppressing InfraRed Imaging Spectrograph near-infrared integral field spectrograph, we obtained spatially resolved spectra for SDSS J09527.62+255257.2, a radio-quiet quasar shown by previous imaging to consist of a galaxy and its close (1."0) companion. We find that the main galaxy is a Type 1 AGN with both broad and narrow AGN emission lines in its spectrum, while the companion galaxy is a Type 2 AGN with narrow emission lines only. The two AGNs are separated by 4.8 kpc, and their redshifts correspond to those of the double peaks of the [Oiii] emission line seen in the Sloan Digital Sky Survey spectrum. Line diagnostics indicate that both components of the double emission lines are due to AGN photoionization. These results confirm that J0952+2552 contains two spatially separated AGNs. As one of the few confirmed dual AGNs at an intermediate separation of <10 kpc, this system offers a unique opportunity to study galaxy mergers and their effect on black hole growth.
机译:大多数大型星系的核心中都包含超大质量黑洞(SMBH)。当星系合并时,气体被驱赶到核区域,并会积聚到中心黑洞中。因此,人们期望在一部分星系合并中看到双活动星系核(AGN)。包含双AGN的星系的候选对象已通过双峰窄[Oiii]发射线的存在和近距离星系对的高空间分辨率图像确定。需要空间分辨光谱法来确认这些星系对是具有空间分隔的双SMBH的系统。使用Keck 2 Laser Guide Star自适应光学系统和OH抑制红外成像光谱仪近红外积分场光谱仪,我们获得了SDSS J09527.62 + 255257.2的空间分辨光谱,SDSS J09527.62 + 255257.2由先前的成像显示是一个安静的类星体,由一个我们发现主星系是在光谱上既有宽谱又有窄AGN发射谱线的1型AGN,而伴星系是只有谱窄的发射谱线的2型AGN。两条AGN的间隔为4.8 kpc,其红移对应于Sloan Digital Sky Survey频谱中看到的[Oiii]发射谱线双峰的谱线,线路诊断表明,双发射谱线的两个分量均归因于AGN这些结果证实了J0952 + 2552包含两个空间上分离的AGN,作为少数几个中间间隔小于10 kpc的双重AGN之一,该系统为研究银河系提供了独特的机会合并及其对黑洞增长的影响。

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