On the Unified Scheme of γ-Ray Emitting Jetted Active Galactic Nuclei

Pub Date : 2023-07-31 DOI:10.1007/s10511-023-09779-x
A. I. Audu, F. C. Odo, E. U. Iyida, O. Okike, A. A. Ubachukwu
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Abstract

The discovery of γ - ray emitting Seyfert galaxies has opened a new unified scheme of active galactic nuclei (AGN) in which jetted Seyfert galaxies are viewed as young counterparts of radio loud AGN. In this paper, we investigate the relationship between gamma-ray (γ - ray) properties of jetted Seyfert galaxies and those of traditionally radio galaxies, radio quasars and BL Lac objects. Results show that jetted Seyfert galaxies appear as low luminosity tail of the radio loud AGNs on the luminosity redshift (Lγ – z) plane, indicating an evolutionary link between them. Nevertheless, narrow-line Seyfert galaxies (NLS1s) do not share similar characteristics with Seyfert galaxies as they possess higher luminosities and redshift than Seyfert galaxies, suggestive that NLS1s are more evolved sources. Analyses of γ – ray and radio core-dominance show that for each subclass of jetted AGN, the beaming angle is wider for radio than for γ - ray emissions. While Seyferts and radio galaxies, on average, have similar low inclination to the line of sight, NLS1 objects have orientations similar to quasars and BL Lacs. There is a significant correlation (r ~ 0.7) between the γ - ray core dominance and γ - ray luminosity. The results are consistent with the revised unification scheme and suggests that NLS1s are highly beamed sources whose parent populations can be found among the regular Seyferts and/or radio galaxies

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γ射线喷射活动星系核的统一方案
γ射线发射塞弗特星系的发现开启了一种新的统一的活动星系核(AGN)方案,其中喷射的塞弗特星系被视为无线电响亮AGN的年轻对应体。本文研究了喷流Seyfert星系的伽马射线(γ射线)性质与传统射电星系、射电类星体和BL Lac天体的伽马射线性质之间的关系。结果表明,喷射的Seyfert星系在光度红移(Lγ - z)平面上表现为射电吵闹agn的低光度尾巴,表明它们之间存在进化联系。然而,窄线塞弗特星系(nls1)与塞弗特星系没有相似的特征,因为它们比塞弗特星系具有更高的光度和红移,这表明nls1是更进化的星系。对γ射线和射电核心优势的分析表明,对于喷射AGN的每个亚类,射电发射的射束角比γ射线发射的射束角更宽。虽然塞弗茨星系和射电星系的平均倾斜度与视线相似,但NLS1天体的倾斜度与类星体和BL lac相似。γ射线核心优势与γ射线光度之间存在显著相关(r ~ 0.7)。结果与修订后的统一方案一致,并表明nls1是高发射源,其母族可以在常规的塞弗茨星系和/或射电星系中找到
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