AGNfitter-rx : Modeling the radio-to-X-ray spectral energy distributions of AGNs

L. N. Martínez-Ramírez, G. Calistro Rivera, E. Lusso, F. Bauer, E. Nardini, J. Buchner, J.I. Michael Brown, C.B. Juan Pineda, J. Matthew Temple, Manda Banerji, M. Stalevski, F. Joseph Hennawi
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Abstract

We present new advancements in the modeling of the spectral energy distributions (SEDs) of active galaxies by introducing the radio-to-X-ray fitting capabilities of the publicly available Bayesian code AGNfitter . The new code release, called AGNfitter-rx models the broad-band photometry covering the radio, infrared (IR), optical, ultraviolet (UV), and X-ray bands consistently using a combination of theoretical and semi-empirical models of the active galactic nucleus (AGN) and host-galaxy emission. This framework enables the detailed characterization of four physical components of the active nuclei, namely the accretion disk, the hot dusty torus, the relativistic jets and core radio emission, and the hot corona, and can be used to model three components within the host galaxy: stellar populations, cold dust, and the radio emission from the star-forming regions. Applying AGNfitter-rx to a diverse sample of 36 AGN SEDs at $z 0.7$ from the AGN SED ATLAS, we investigated and compared the performance of state-of-the-art torus and accretion disk emission models in terms of fit quality and inferred physical parameters. We find that clumpy torus models that include polar winds and semi-empirical accretion disk templates including emission-line features significantly increase the fit quality in 67 of the sources by reducing by $2 fit residuals in the $1.5-5 1mm m$ and $0.7 1mm m$ regimes. We demonstrate that, by applying AGNfitter-rx to photometric data, we are able to estimate the inclination and opening angles of the torus, consistent with spectroscopic classifications within the AGN unified model, as well as black hole masses congruent with virial estimates based on Halpha . We investigate wavelength-dependent AGN fractions across the spectrum for Type 1 and Type 2 AGNs, finding dominant AGN fractions in radio, mid-infrared, and X-ray bands, which are in agreement with the findings from empirical methods for AGN selection. The wavelength coverage and the flexibility for the inclusion of state-of-the-art theoretical models make AGNfitter-rx a unique tool for the further development of SED modeling for AGNs in present and future radio-to-X-ray galaxy surveys.
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AGNfitter-rx : AGN 的射电到 X 射线光谱能量分布建模
我们介绍了公开可用的贝叶斯代码 AGNfitter 的射电到 X 射线拟合功能,从而展示了活动星系光谱能量分布(SED)建模的新进展。新发布的代码名为 AGNfitter-rx,利用活动星系核(AGN)和宿主星系发射的理论和半经验模型组合,对覆盖射电、红外(IR)、光学、紫外(UV)和 X 射线波段的宽波段光度测量进行了一致的建模。这个框架能够详细描述活动核的四个物理组成部分,即吸积盘、热尘环、相对论喷流和核心射电辐射以及热日冕,并可用于模拟宿主星系内的三个组成部分:恒星群、冷尘埃以及恒星形成区的射电辐射。我们将 AGNfitter-rx 应用于来自 AGN SED ATLAS 的 $z 0.7$ 的 36 个 AGN SEDs 样本,从拟合质量和推断物理参数的角度研究和比较了最先进的环和吸积盘发射模型的性能。我们发现,包含极风的簇状环模型和包含发射线特征的半经验吸积盘模板,通过在 1.5-5 1mm m$ 和 0.7 1mm m$ 范围内减少 2 美元的拟合残差,显著提高了 67 个源的拟合质量。我们证明,通过将 AGNfitter-rx 应用于测光数据,我们能够估算出环状体的倾角和开口角,这与 AGN 统一模型中的光谱分类一致,而且黑洞质量也与基于 Halpha 的病毒估计值一致。我们研究了1型和2型AGN在整个光谱中与波长相关的AGN比例,发现在射电、中红外和X射线波段中AGN比例占主导地位,这与AGN选择经验方法的发现一致。AGNfitter-rx的波长覆盖范围和纳入最新理论模型的灵活性,使其成为在目前和未来的射电-X射线星系巡天中进一步发展AGN SED建模的独特工具。
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