论文标题

用红移H $β$和Fe II宽发射线测量SDSS DR5类星体中的病毒因子

Measuring the Virial Factor in SDSS DR5 Quasars with Redshifted H$β$ and Fe ii Broad Emission Lines

论文作者

Liu, H. T., Feng, Hai-Cheng, Li, Sha-Sha, Bai, J. M.

论文摘要

在中央超级黑洞引起的重力红移的假设下,并基于线的宽度和向红向变化的H $β$和Fe II的转移,用于1973 $ z <0.8 $ z <0.8 $ z <0.8 $ sdss dr5 quasar的样本,我们测量了通过确定超级质量黑洞质量的病毒因素,通常是通过多次估计的方法(通常是corlessation corveration corveration or Credmist or Cpappers)。据信病毒因子来自宽线区域的几何效应。对于这些类星体的98%,测得的Fe II病毒因子大于H $β$的病毒因子。病毒因子因物体到对象和不同的发射线而有很大不同。对于大多数这些类星体,H $β$的病毒系数大于通常用于确定黑洞质量的平均值。 H $β$,无量纲增生率和Fe II/H $β$线比的测得的病毒因子之间存在三个正相关。在这三个数量之间发现了三维正相关,并且这种相关性表明病毒因子可能由无量纲的积聚率和金属性主导。在黑洞的重力半径的单位中,H $β$的红向重移和宽线区域半径的缩放大小之间存在负相关。如果H $β$的红移主要来自黑洞的重力,则自然会预期这种负相关。来自积聚盘的辐射压力可能是病毒因子的重要原因。

Under the hypothesis of gravitational redshift induced by the central supermassive black hole, and based on line widths and shifts of redward shifted H$β$ and Fe ii broad emission lines for a sample of 1973 $z<0.8$ SDSS DR5 quasars, we measured the virial factor in determining supermassive black hole masses, usually estimated by the reverberation mapping (RM) method or the relevant secondary methods. The virial factor had been believed to be from the geometric effect of broad-line region. The measured virial factor of Fe ii is larger than that of H$β$ for 98% of these quasars. The virial factor is very different from object to object and for different emission lines. For most of these quasars, the virial factor of H$β$ is larger than these averages that were usually used in determining the masses of black holes. There are three positive correlations among the measured virial factor of H$β$, dimensionless accretion rate and Fe ii/H$β$ line ratio. A positive three-dimensional correlation is found among these three quantities, and this correlation indicates that the virial factor is likely dominated by the dimensionless accretion rate and metallicity. A negative correlation is found between the redward shift of H$β$ and the scaled size of broad-line region radius in units of the gravitational radius of black hole. This negative correlation will be expected naturally if the redward shift of H$β$ is mainly from the gravity of black hole. Radiation pressure from accretion disk may be a significant contributor to the virial factor.

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