论文标题

狭窄和宽线1个星系中X射线光子指数的比较

A comparison of X-ray photon indices among the narrow and broad-line Seyfert 1 galaxies

论文作者

Ojha, Vineet, Chand, Hum, Dewangan, Gulab Chand, Rakshit, Suvendu

论文摘要

与使用Rosat和/或XMM-Newton Telescopes的观测值相比,我们使用221个窄线Seyfert 1(NLSY1)星系的样本进行了详细的比较系统研究,与红移154个宽线Seyfert 1(Blsy1)星系相比,我们提供了一项详细的比较系统研究。进行了同质分析以估算其软X射线光子指数($γ^{s} _ {X} $)及其与其他核活动参数的相关性,例如Eddington比率(R $ _ \ Mathrm {Edd} $),Blampormote lumomeSities(L $ _ \ MATHIMES), (M $ _ \ Mathrm {BH} $)和H $β$线的广泛组件(fwhm(h $β$))的宽度。在我们的分析中,我们发现了明确的证据表明$γ^{s} _ {x} $和r $ _ \ Mathrm {edd} $在NLSY1和Blsy1星系中分布,具有更陡峭的$γ^{s} _ {x} $,以及更高的r $ _ \ _ \ mathrm {Edd} $,以前。基于对2-10 kev Energy频段中的53 NLSY1和46 Blsy1星系的分析,在硬X射线($γ^{h} _ {x} $)中的光谱指数分布中也存在这种差异。 R $ _ \ Mathrm {EDD} $分布的差异即使对NLSY1和BLSY1星系的倾斜角度差进行平均校正后,也存在。我们还估计了基于0.3-10 Kev Energy Band上的34个NLSY1和30 Blsy1星系的SED拟合,估计R $ _ \ MATHRM {EDD} $,发现结果仍然与基于光学横光的R $ _ \ Mathrm {EDD} $估计值一致。我们的分析表明,NLSY1中较高的r $ _ \ mathrm {edd} $与Blsy1相比,其较陡峭的X射线频谱斜率是较陡峭的X射线频谱斜率,这与适用于发光AGN的Disc-Corona模型一致。

We present a detailed comparative systematic study using a sample of 221 Narrow-line Seyfert 1 (NLSy1) galaxies in comparison to a redshift matched sample of 154 Broad-line Seyfert 1 (BLSy1) galaxies based on their observations using ROSAT and/or XMM-Newton telescopes in soft X-ray band (0.1-2.0 keV). A homogeneous analysis is carried out to estimate their soft X-ray photon indices ($Γ^{s}_{X}$) and its correlations with other parameters of nuclear activities such as Eddington ratios (R$_\mathrm{Edd}$), bolometric luminosities (L$_\mathrm{bol}$), black hole masses (M$_\mathrm{BH}$) and the widths of the broad component of H$β$ lines (FWHM(H$β$)). In our analysis, we found clear evidence of the difference in the $Γ^{s}_{X}$ and R$_\mathrm{Edd}$ distributions among NLSy1 and BLSy1 galaxies, with steeper $Γ^{s}_{X}$ and higher R$_\mathrm{Edd}$ for the former. Such a difference also exists in the spectral indices distribution in hard X-ray ($Γ^{h}_{X}$), based on the analysis of 53 NLSy1 and 46 BLSy1 galaxies in the 2-10 keV energy band. The difference in R$_\mathrm{Edd}$ distributions does exist even after applying the average correction for the difference in the inclination angle of NLSy1 and BLSy1 galaxies. We also estimated R$_\mathrm{Edd}$, based on SED fitting of 34 NLSy1 and 30 BLSy1 galaxies over the 0.3-10 keV energy band and found that results are still consistent with R$_\mathrm{Edd}$ estimates based on the optical bolometric luminosity. Our analysis suggests that the higher R$_\mathrm{Edd}$ in NLSy1 is responsible for its steeper X-ray spectral slope compared to the BLSy1, consistent with the disc-corona model as proposed for the luminous AGNs.

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