论文标题

在1 <z <2处取消对无线电射线射线排放的AGN和恒星形成的贡献

Disentangling the AGN and Star-Formation Contributions to the Radio-X-ray Emission of Radio-Loud Quasars at 1<z<2

论文作者

Azadi, Mojegan, Wilkes, Belinda, Kuraszkiewicz, Joanna, McDowell, Jonathan, Siebenmorgen, Ralf, Ashby, Matthew, Birkinshaw, Mark, Worrall, Diana, Abrams, Natasha, Barthel, Peter, Fazio, Giovanni, Haas, Martin, Hyman, Sóley, Martínez-Galarza, Rafael, Meyer, Eileen

论文摘要

我们限制了主动银河核(AGN)产生的巨大电磁输出及其宿主星系的发射机制,并具有新型的最先进的AGN Radio-to-X射线光谱频谱分布模型拟合代码(ARXSED)。 ARXSED结合了多个组件,以适合AGN及其宿主星系的光谱能分布(SED)。发射组件包括无线电结构,例如Lobes和Jets,来自AGN圆环的红外发射,吸积盘可见到X射线的发射以及宿主星系中的无线电脉冲发射。在1 <z <2处将ARX应用于20个3CRR类星体的无线电SED,这在存在紧凑的无线电结构时验证了不仅仅是简单的功率定律。非热发射占观察到的1.25mm至850μm通量的91%-57%,并且在使用这些波长估算恒星形成特性时必须考虑该组件。我们预测超过一半的样品源中存在强大的无线电X射线发射。 ARXSED估计中位数(以及相关的第一和第三四分位数范围)BH质量为$ 2.9_ {1.7}^{6.0} \ times 10^9〜 \ rm m _ {\ odot} $,Eddington比值的埃德丁顿比率为$ -1.0 _ { - 1.2}我们的样本0.98_ {0.94}^{0.99} $。推断的AGN圆环和积聚磁盘参数与文献中相似样品的光谱分析估计的参数一致。我们介绍了1 <z <2的发光射线大型类星体的中间固有的sed;该扎根代表了每个组件的建模方式的显着改善。

We constrain the emission mechanisms responsible for the prodigious electromagnetic output generated by active galactic nuclei (AGN) and their host galaxies with a novel state-of-the-art AGN radio- to-X-ray spectral energy distribution model fitting code (ARXSED). ARXSED combines multiple components to fit the spectral energy distributions (SEDs) of AGN and their host galaxies. Emission components include radio structures such as lobes and jets, infrared emission from the AGN torus, visible-to-X-ray emission from the accretion disk, and radio-to-ultraviolet emission from the host galaxy. Applying ARXSED to the radio SEDs of 20 3CRR quasars at 1 < z < 2 verifies the need for more than a simple power law when compact radio structures are present. The non-thermal emission contributes 91%-57% of the observed-frame 1.25mm to 850μm flux, and this component must be accounted for when using these wavelengths to estimate star-formation properties. We predict the presence of strong radio-linked X-ray emission in more than half the sample sources. ARXSED estimates median (and the associated first and third quartile ranges) BH mass of $2.9_{1.7}^{6.0} \times 10^9~\rm M_{\odot}$, logarithm of Eddington ratio of $ -1.0_{-1.2}^{-0.6} $, and spin of $ 0.98_{0.94}^{0.99} $ for our sample. The inferred AGN torus and accretion disk parameters agree with those estimated from spectroscopic analyses of similar samples in the literature. We present the median intrinsic SED of the luminous radio-loud quasars at 1 < z < 2 ; this SED represents a significant improvement in the way each component is modeled.

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