首页> 外文期刊>The Astrophysical journal >LOCAL LUMINOUS INFRARED GALAXIES. II. ACTIVE GALACTIC NUCLEUS ACTIVITY FROM SPITZER/INFRARED SPECTROGRAPH SPECTRA*
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LOCAL LUMINOUS INFRARED GALAXIES. II. ACTIVE GALACTIC NUCLEUS ACTIVITY FROM SPITZER/INFRARED SPECTROGRAPH SPECTRA*

机译:本地发光红外星系。二。 SPITZER /红外光谱图的主动银河核活性*

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We quantify the active galactic nucleus (AGN) contribution to the mid-infrared (mid-IR) and the total infrared (IR, 8-1000 μm) emission in a complete volume-limited sample of 53 local luminous infrared galaxies (LIRGs, L IR = 1011-1012 L ☉). We decompose the Spitzer Infrared Spectrograph low-resolution 5-38 μm spectra of the LIRGs into AGN and starburst components using clumpy torus models and star-forming galaxy templates, respectively. We find that 50% (25/50) of local LIRGs have an AGN component detected with this method. There is good agreement between these AGN detections through mid-IR spectral decomposition and other AGN indicators, such as the optical spectral class, mid-IR spectral features, and X-ray properties. Taking all the AGN indicators together, the AGN detection rate in the individual nuclei of LIRGs is ~62%. The derived AGN bolometric luminosities are in the range L bol(AGN) = (0.4-50) × 1043 erg s–1. The AGN bolometric contribution to the IR luminosities of the galaxies is generally small, with 70% of LIRGs having L bol[AGN]/L IR ≤ 0.05. Only 8% of local LIRGs have a significant AGN bolometric contribution L bol[AGN]/L IR 0.25. From the comparison of our results with literature results of ultraluminous infrared galaxies (L IR = 1012-1013 L ☉), we confirm that in the local universe the AGN bolometric contribution to the IR luminosity increases with the IR luminosity of the galaxy/system. If we add up the AGN bolometric luminosities we find that AGNs only account for of the total IR luminosity produced by local LIRGs (with and without AGN detections). This proves that the bulk of the IR luminosity of local LIRGs is due to star formation activity. Taking the newly determined IR luminosity density of LIRGs in the local universe, we then estimate an AGN IR luminosity density of ΩAGN IR = 3 × 105 L ☉ Mpc–3 in LIRGs.
机译:我们在53个局部发光红外星系(LIRGs,L)的完整体积受限样品中,量化了活跃银河原子核(AGN)对中红外(mid-IR)和总红外(IR,8-1000μm)发射的贡献IR = 1011-1012 L☉)。我们分别使用团块圆环模型和恒星形成星系模板将LIRG的Spitzer红外光谱仪的低分辨率5-38μm光谱分解为AGN和星暴成分。我们发现使用此方法检测到50%(25/50)的本地LIRG具有AGN分量。通过中红外光谱分解进行的这些AGN检测与其他AGN指标(例如光谱类别,中红外光谱特征和X射线特性)之间有着很好的一致性。综合所有AGN指标,LIRGs单个核中的AGN检测率约为62%。得出的AGN辐射热亮度在L bol(AGN)=(0.4-50)×1043 erg s-1范围内。 AGN对银河系红外光度的辐射热测量通常很小,其中70%的LIRG具有L bol [AGN] / L IR≤0.05。只有8%的本地LIRG具有明显的AGN辐射热计量贡献L bol [AGN] / L IR> 0.25。通过将我们的结果与超发光红外星系(L IR = 1012-1013 L literature)的文献结果进行比较,我们确认,在局部宇宙中,AGN对红外光度的辐射热测量随着银河系/系统的红外光度的增加而增加。如果我们将AGN辐射热亮度相加,我们会发现AGN仅占本地LIRG(带或不带AGN检测)产生的总IR亮度的一部分。这证明了局部LIRG的大部分IR光度是由恒星形成活动引起的。取新近确定的局部宇宙中LIRGs的IR光度密度,我们估计LIRGs中AGN IR = 3×105 L☉Mpc–3的AGN IR光度密度。

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