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The AGN content in luminous infrared galaxies at z ∼ 2 from a global SED analysis including Herschel data

机译:来自包括Herschel数据在内的全球SED分析得出的z〜2发光红外星系中的AGN含量

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摘要

We use Herschel-PACS far-infrared (IR) data, combined with previous multiband information and mid-IR spectra, to properly account for the presence of an active nucleus and constrain its energetic contribution in luminous IR sources at z∼ 2. The sample is composed of 24 sources in the GOODS-South field, with typical IR luminosity of 10^(12) L_⊙. Data from the 4 Ms Chandra X-ray imaging in this field are also used to identify and characterize active galactic nucleus (AGN) emission.udWe reproduce the observed spectral energy distribution (SED), decomposed into a host-galaxy and an AGN component. A smooth-torus model for circumnuclear dust is used to account for the direct and reprocessed contribution from the AGN.udWe confirm that galaxies with typical L_(8-1000µm) ~ 10^(12) L_☉ at z∼ 2 are powered predominantly by star formation. An AGN component is present in nine objects (∼35 per cent of the sample) at the 3σ confidence level, but its contribution to the 8–1000 µm emission accounts for only ∼5 per cent of the energy budget. The AGN contribution rises to ∼23 per cent over the 5–30 µm range (in agreement with Spitzer IRS results) and to ∼60 per cent over the narrow 2–6 µm range. The presence of an AGN is confirmed by X-ray data for three (out of nine) sources, with X-ray spectral analysis indicating the presence of significant absorption, i.e. N_H ∼ 10^(23)–10^(24) cm^(−2). An additional source shows indications of obscured AGN emission from X-ray data. The comparison between the mid-IR-derived X-ray luminosities and those obtained from X-ray data suggests that obscuration is likely present also in the remaining six sources that harbour an AGN according to the SED-fitting analysis.
机译:我们将Herschel-PACS远红外(IR)数据与先前的多波段信息和中红外光谱结合使用,以适当地考虑活动核的存在并限制其在z〜2的发光红外源中的能量贡献。由GOODS-South场中的24个源组成,典型的IR发光度为10 ^(12)L_⊙。来自该领域4毫秒Chandra X射线成像的数据也用于识别和表征活跃的银河核(AGN)发射。 ud我们复制了观测到的光谱能量分布(SED),分解为宿主星系和AGN分量。我们使用圆环模型的光滑环模型解释了AGN的直接和再处理贡献。 ud我们确认,z〜2处典型L_(8-1000μm)〜10 ^(12)L_☉的星系主要被供电通过恒星形成。在3σ置信水平下,AGN成分存在于9个对象中(占样本的35%),但其对8-1000 µm排放的贡献仅占能源预算的5%。在5–30 µm范围内,AGN贡献上升至约23%(与Spitzer IRS结果一致),而在2–6 µm狭窄范围内,上升至约60%。通过三个(九个)源的X射线数据确认了AGN的存在,X射线光谱分析表明存在明显的吸收,即N_H〜10 ^(23)–10 ^(24)cm ^ (-2)。另一个来源显示了X射线数据掩盖了AGN发射的迹象。从中红外得出的X射线亮度与从X射线数据获得的X射线亮度之间的比较表明,根据SED拟合分析,在其余六个带有AGN的光源中也可能存在遮盖。

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