A new method to measure the virial factors in the reverberation mapping of AGNs
arXiv:1512.02436 · doi:10.1093/mnras/stw3261
Abstract
Based on the gravitational redshift, one prediction of Einstein's general relativity theory, of broad optical emission lines in active galactic nuclei (AGNs), a new method is proposed to estimate the virial factors in measuring black hole masses by the reverberation mapping of AGNs. The factors can be measured on the basis of two physical quantities, i.e. the gravitational redshifts and full widths at half maxima of broad lines. In the past it has been difficult to determine the factors for individual AGNs. We apply this new method to several reverberation mapped Seyfert 1 galaxies. There is a correlation between and broad-line region (BLR) radius , , for the gravitationally redshifted broad lines He II, He I, H and H in narrow-line Seyfert 1 galaxy (NLS1) Mrk 110. This correlation results from the radiation pressure influence of the accretion disc on the BLR clouds. The radiation pressure influence seems to be more important than usually thought in AGNs. Mrk 110 has 8--16, distinctly larger than the mean , usually used to estimate in the case of . NGC 4593 and NLS1 Mrk 486 has and , respectively. Higher values of several tens are derived for three other NLS1s. There is a correlation between and accretion rate , for five objects, where as is assumed to estimate used in the Eddington luminosity , is the mass accretion rate, and is the speed of light. These larger values will produce higher values and lower Eddington ratios.
9 pages, 4 figure, 4 tables, moderate revision, version III
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