论文标题

AGN的积聚历史:X射线发光AGN中的宿主星系性能从z = 0-3

Accretion History of AGN: Estimating the Host Galaxy Properties in X-ray Luminous AGN from z=0-3

论文作者

Coleman, Brandon, Kirkpatrick, Allison, Cooke, Kevin C., Glikman, Eilat, La Massa, Stephanie, Marchesi, Stefano, Peca, Alessandro, Treister, Ezequiel, Auge, Connor, Urry, C. Megan, Sanders, Dave, Turner, Tracey Jane, Ananna, Tonima Tasnim

论文摘要

我们旨在确定X射线露出的类星体在宇宙时间内的固有远红外(Far-Ir)发射。使用XMM-Newton和Herschel空间天文台调查的条带82场的16 deg^2区域,我们在Z〜0-3范围内确定2905 X射线发光(Lx> 10^42 ERG/S)活性银河核(AGN)。 IR是限制宿主星系特性(例如恒星形成速率(SFR)和气体质量)所必需的。但是,在X射线和IR中仅检测到我们的AGN的10%。由于Herschel在Far-Ir中未发现90%的样本,因此我们通过将其Herschel/Spire图像堆叠在X射线光度和红移的箱中,探索这些未检测到的来源的平均IR发射。我们创建了从光学到FAR-IR的堆叠光谱能量分布,并使用拟合程序估算了中值恒星形成率,尘埃质量,恒星质量和红外光度。我们发现,堆叠的源平均具有与IR检测到的源相似的SFR/L_BOL比率。我们的大多数来源都属于或之上的主序列线,这表明仅X射线选择不能预测星系在主序列上的位置。我们还发现,我们AGN的气体耗尽时间尺度与尘土飞扬的星系相似。这表明X射线选择的AGN宿主高星形形成,并且没有恒星形成下降的迹象。

We aim to determine the intrinsic far-Infrared (far-IR) emission of X-ray-luminous quasars over cosmic time. Using a 16 deg^2 region of the Stripe 82 field surveyed by XMM-Newton and Herschel Space Observatory, we identify 2905 X-ray luminous (LX > 10^42 erg/s) Active Galactic Nuclei (AGN) in the range z ~ 0-3. The IR is necessary to constrain host galaxy properties such as star formation rate (SFR) and gas mass. However, only 10% of our AGN are detected both in the X-ray and IR. Because 90% of the sample is undetected in the far-IR by Herschel, we explore the mean IR emission of these undetected sources by stacking their Herschel/SPIRE images in bins of X-ray luminosity and redshift. We create stacked spectral energy distributions from the optical to the far-IR, and estimate the median star formation rate, dust mass, stellar mass, and infrared luminosity using a fitting routine. We find that the stacked sources on average have similar SFR/L_bol ratios as IR detected sources. The majority of our sources fall on or above the main sequence line suggesting that X-ray selection alone does not predict the location of a galaxy on the main sequence. We also find that the gas depletion timescales of our AGN are similar to those of dusty star forming galaxies. This suggests that X-ray selected AGN host high star formation and that there are no signs of declining star formation.

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