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Properties of the Narrow Line Seyfert 1 Galaxies Revisited

机译:细线塞弗特1星系的性质。

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There is growing evidence to suggest that the black hole mass has been previously underestimated with the Hb line width for certain Active Galactic Nuclei (AGN). With the assumption of the flatter rather than isotropic velocity distribution of gases in the broad-line region of AGN, we investigated the properties of Narrow Line Seyfert 1 (NLS1) galaxies, like the black hole mass and the Eddington ratio, and compared with Broad Line Seyfert 1 (BLS1) galaxies. Since gamma-rays detected in a few NLS1s which favored a smaller viewing angle in NLS1s than BLS1s, with the projection effect, we estimated the relative black hole mass and Eddington ratio for NLS1s and BLS1s. The result implies that the NLS1s and BLS1s have similar black hole masses and Eddington ratios, peaked at a larger black hole mass and lower Eddington ratio for the NLS1s than thought before. Furthermore, with applying the correction factor 6 of average black hole mass as derived from the modeling of both optical and UV data in radio-loud NLS1s by Calderone et al., to the Xu et al. sample, we find that the NLS1s and BLS1s also show similar black hole masses and Eddington ratios, peaked at 2.0 × 107 solar masses and 0.12 (Eddington ratio) for the NLS1s. The ? relation due to the enhanced black hole masses of NLS1s is discussed. In addition, there seems to show a linear correlation between jet power and disk luminosity for the flat spectrum radio-loud NLS1 sample, which implies an accretion dominated rather than black hole spin dominated jet.
机译:越来越多的证据表明,某些活动星系核(AGN)的黑洞质量先前被Hb线宽低估了。假设AGN宽线区域中气体的速度分布较为平坦而不是各向同性,我们研究了窄线赛弗1(NLS1)星系的性质,如黑洞质量和爱丁顿比,并将其与宽塞弗特1(BLS1)星系。由于在少数NLS1中检测到的伽玛射线比NLS1s具有更小的视角,因此具有投影效果,因此我们估算了NLS1和BLS1的相对黑洞质量和爱丁顿比。结果表明,NLS1和BLS1具有相似的黑洞质量和Eddington比,在NLS1的黑洞质量和Eddington比比以前想象的要大时达到峰值。此外,通过将由Calderone等人对无线电大声NLS1s中的光学和紫外线数据建模得到的平均黑洞质量校正因子6应用于Xu等人。在样本中,我们发现NLS1和BLS1也显示出类似的黑洞质量和爱丁顿比率,峰值为2.0×107太阳质量,而NLS1的峰值为0.12(爱丁顿比率)。 ?讨论了由于NLS1s的黑洞质量增加而产生的关系。此外,对于平面频谱无线电大声NLS1样本,射流功率和磁盘光度之间似乎显示出线性相关性,这暗示着以吸积为主导而不是黑洞自旋为主导的射流。

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