论文标题

Nustar对遮盖的Swift/BAT选择的活性银河核的调查:II。 Seyfert II硬X射线光谱中的高能中值

NuSTAR Survey of Obscured Swift/BAT-selected Active Galactic Nuclei: II. Median High-energy Cutoff in Seyfert II Hard X-ray Spectra

论文作者

Baloković, M., Harrison, F. A., Madejski, G., Comastri, A., Ricci, C., Annuar, A., Ballantyne, D. R., Boorman, P., Brandt, W. N., Brightman, M., Gandhi, P., Kamraj, N., Koss, M. J., Marchesi, S., Marinucci, A., Masini, A., Matt, G., Stern, D., Urry, C. M.

论文摘要

活性银河核(AGN)冠状X射线发射的宽带X射线光谱可以为非常接近其中央超级黑孔的物理条件提供重要的见解。形成电晕的构成等离子体的温度通过高能截止值表现出来,即使在最亮的AGN中也很难直接限制,因为它需要在10 keV以上的能量上的高质量数据。在本文中,我们基于在硬X射线频带中选择的130个AGN的样本,与Swift/BAT选择的130个AGN的样本有关coronal截止限制,并与Nustar和Swift/XRT同时观察。我们发现,在一组关于部分约束的假设下,中值截止被很好地限制在290美元$ \ pm $ 20 KEV,其中不确定性是统计的,并在68%的置信度下给出。我们研究了该结果对我们的假设的敏感性,并发现对各种已知系统不确定性的考虑可以牢固地将中位数截止在240 KEV和340 KEV之间。发现中央68%的固有截止分布在约140 KEV和500 KEV之间,估计不确定性分别为20 keV和100 keV。与文献相比,我们没有发现明确的证据表明,被遮盖和不可消除的AGN中的截止值大不相同。我们的分析强调了仔细考虑对AGN冠状高能截止的部分和潜在退化约束的重要性。

Broadband X-ray spectroscopy of the X-ray emission produced in the coronae of active galactic nuclei (AGN) can provide important insights into the physical conditions very close to their central supermassive black holes. The temperature of the Comptonizing plasma that forms the corona is manifested through a high-energy cutoff that has been difficult to directly constrain even in the brightest AGN because it requires high-quality data at energies above 10 keV. In this paper we present a large collection of coronal cutoff constraints for obscured AGN based on a sample of 130 AGN selected in the hard X-ray band with Swift/BAT and observed nearly simultaneously with NuSTAR and Swift/XRT. We find that under a reasonable set of assumptions regarding partial constraints the median cutoff is well constrained to 290$\pm$20 keV, where the uncertainty is statistical and given at the 68% confidence level. We investigate the sensitivity of this result to our assumptions and find that consideration of various known systematic uncertainties robustly places the median cutoff between 240 keV and 340 keV. The central 68% of the intrinsic cutoff distribution is found to be between about 140 keV and 500 keV, with estimated uncertainties of 20 keV and 100 keV, respectively. In comparison with the literature, we find no clear evidence that the cutoffs in obscured and unobscured AGN are substantially different. Our analysis highlights the importance of carefully considering partial and potentially degenerate constraints on the coronal high-energy cutoff in AGN.

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