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首页> 外文期刊>The Astrophysical journal >CONNECTION BETWEEN MID-INFRARED EMISSION PROPERTIES AND NARROW-LINE REGION OUTFLOWS IN TYPE 1 ACTIVE GALACTIC NUCLEI
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CONNECTION BETWEEN MID-INFRARED EMISSION PROPERTIES AND NARROW-LINE REGION OUTFLOWS IN TYPE 1 ACTIVE GALACTIC NUCLEI

机译:1型活性银河系核的中红外发射特性与窄线区域流出量之间的关系

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The location of warm dust producing the mid-infrared (MIR) emission in type 1 active galactic nuclei (AGNs) is complex and not yet fully known. We explore this problem by studying how the MIR covering factor (CFMIR = L MIR/L bol) correlates with the fundamental parameters of AGN accretion process (such as L bol, black hole mass M BH, and Eddington ratio L/L Edd) and the properties of narrow emission lines (as represented by [O?III]?λ5007), using large data sets derived from the Sloan Digital Sky Spectroscopic Survey (SDSS) and the Wide Infrared Sky Survey (WISE). First, we find that the luminosity of the [O?III] wing component (L wing) correlates more tightly with the continuum luminosity (λL λ(5100)) than the luminosity of the line core component (L core) does, which is in line with our previous conclusion that the wing component, generally blueshifted, originates from the polar outflows in the inner narrow-line region (NLR). We then find that the MIR CF shows the strongest correlation with L wing/L bol rather than with L core/L bol or the above fundamental AGN parameters, and the correlation becomes stronger as the infrared wavelength increases. We also confirm the anti-correlations of CFMIR with L bol and M BH, and the lack of dependence of CFMIR on the Eddington ratio. These results suggest that a large fraction of the warm dust producing MIR emission in AGNs is likely embedded in polar outflows in the NLR instead of in the torus.
机译:在1型活跃银河核(AGNs)中产生中红外(MIR)发射的温暖尘埃的位置很复杂,尚不完全清楚。我们通过研究MIR覆盖因子(CFMIR = L MIR / L bol)与AGN积聚过程的基本参数(例如L bol,黑洞质量M BH和爱丁顿比L / L Edd)之间的关系来探索这一问题。利用斯隆数字天空光谱调查(SDSS)和宽红外天空调查(WISE)得出的大型数据集,确定窄发射谱线的特性(用[O?III]→λ5007表示)。首先,我们发现[O?III]机翼组件(L机翼)的光度与连续光度(λLλ(5100))的关系比线芯组件(L core)的光度更紧密。与我们先前得出的结论一致,即机翼组件通常发生蓝移,是由于内部窄线区域(NLR)中的极性流出引起的。然后,我们发现MIR CF与L wing / L bol的相关性最强,而不是L core / L bol或上述基本AGN参数的相关性最强,并且随着红外波长的增加,相关性变得更强。我们还证实了CFMIR与L bol和M BH的反相关性,以及CFMIR对Eddington比的依赖性不足。这些结果表明,在AGNs中产生MIR辐射的暖尘的很大一部分很可能埋在NLR的极性流出物中,而不是在环面中。

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