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IC 3639—A New Bona Fide Compton-Thick AGN Unveiled by NuSTAR

机译:IC 3639— NuSTAR推出的新型Bona Fide康普顿厚AGN

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摘要

We analyze high-quality NuSTAR observations of the local (z = 0.011) Seyfert 2 active galactic nucleus (AGN) IC 3639, in conjunction with archival Suzaku and Chandra data. This provides the first broadband X-ray spectral analysis of the source, spanning nearly two decades in energy (0.5–30 keV). Previous X-ray observations of the source below 10 keV indicated strong reflection/obscuration on the basis of a pronounced iron fluorescence line at 6.4 keV. The hard X-ray energy coverage of NuSTAR, together with self-consistent toroidal reprocessing models, enables direct broadband constraints on the obscuring column density of the source. We find the source to be heavily Compton-thick (CTK) with an obscuring column in excess of 3.6 x 10^(24) cm^(−2), unconstrained at the upper end. We further find an intrinsic 2–10 keV luminosity of log_(10)(L_(2-10keV) [erg s^(-1)])={43.4}_(-1.1)^(+0.6 to 90% confidence, almost 400 times the observed flux, and consistent with various multiwavelength diagnostics. Such a high ratio of intrinsic to observed flux, in addition to an Fe-Kα fluorescence line equivalent width exceeding 2 keV, is extreme among known bona fide CTK AGNs, which we suggest are both due to the high level of obscuration present around IC 3639. Our study demonstrates that broadband spectroscopic modeling with NuSTAR enables large corrections for obscuration to be carried out robustly and emphasizes the need for improved modeling of AGN tori showing intense iron fluorescence.
机译:我们结合档案库Suzaku和Chandra数据,分析了本地(z = 0.011)Seyfert 2活动银河核(AGN)IC 3639的高质量NuSTAR观测值。这提供了该源的首次宽带X射线光谱分析,涵盖了近二十年的能量(0.5–30 keV)。先前对10 keV以下的光源进行X射线观察表明,在6.4 keV处有明显的铁荧光线的基础上,强烈的反射/模糊。 NuSTAR的硬X射线能量覆盖范围以及自洽的环形再处理模型使直接的宽带约束成为了对源隐秘的柱密度的限制。我们发现源是康普顿厚(CTK)厚的,具有超过3.6 x 10 ^(24)cm ^(-2)的隐蔽柱,在上端不受限制。我们进一步发现log_(10)(L_(2-10keV)[erg s ^(-1)])= {43.4} _(-1.1)^(+ 0.6至90%置信度,在已知的真实CTK AGN中,极端高的本征通量与观察到的通量之比,以及Fe-Kα荧光谱线等效宽度超过2 keV之外,都是如此之高,这是我们发现的极端现象。提示这两者都是由于IC 3639周围存在大量遮盖力。我们的研究表明,使用NuSTAR进行宽带光谱建模可以对遮盖力进行大幅度校正,并强调需要改进AGN花托的建模以显示强烈的铁荧光。

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