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Estimation of relativistic accretion disk parameters from iron line emission
被引:21
作者:
Pariev, VI
Bromley, BC
Miller, WA
机构:
[1] Los Alamos Natl Lab, Theoret Astrophys Grp, Los Alamos, NM 87545 USA
[2] Univ Utah, Dept Phys, Salt Lake City, UT 84112 USA
关键词:
accretion;
accretion disks;
black hole physics;
galaxies : active;
line : profiles;
X-rays : galaxies;
D O I:
10.1086/318407
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
The observed iron K alpha fluorescence lines in Seyfert 1 galaxies provide strong evidence for an accretion disk near a supermassive black hole as a source of the emission. Here we present an analysis of the geometrical and kinematic properties of the disk based on the extreme frequency shifts of a line profile as determined by measurable flux in both the red and blue wings. The edges of the line are insensitive to the distribution of the X-ray flux over the disk and hence provide a robust alternative to profile fitting of disk parameters. Our approach yields new, strong bounds on the inclination angle of the disk and the location of the emitting region. We apply our method to interpret observational data from MCG -6-30-15 and find that the commonly assumed inclination 30 degrees for the accretion disk in MCG -6-30-15 is inconsistent with the position of the blue edge of the line at a 3 sigma level. A thick turbulent disk model or the presence of highly ionized iron may reconcile the bounds on inclination from the line edges with the full line profile fits based on simple, geometrically thin disk models. The bounds on the innermost radius of disk emission indicate that the black hole in MCG -6-30-15 is rotating faster than 30% of theoretical maximum. When applied to data from NGC 4151, our method gives bounds on the inclination angle of the X-ray-emitting inner disk of 50 degrees +/- 10 degrees, consistent with the presence of an ionization cone grazing the disk as proposed by Pedlar. The frequency extrema analysis also provides limits to the innermost disk radius in another Seyfert 1 galaxy, NGC 3516, and is suggestive of a thick-disk model.
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页码:649 / 666
页数:18
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