The iron Kα-line diagnostics of a rotational black-hole metric

被引:15
作者
Zakharov, AF [1 ]
Repin, SV
机构
[1] Ctr Astro Space, PN Lebedev Phys Inst, Inst Theoret & Expt Phys, Moscow 117259, Russia
[2] Moscow Space Res Inst, Moscow 117810, Russia
来源
NUOVO CIMENTO DELLA SOCIETA ITALIANA DI FISICA B-BASIC TOPICS IN PHYSICS | 2003年 / 118卷 / 10-12期
关键词
D O I
10.1393/ncb/i2004-10013-2
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The original idea to show the space-time geometry using few geodesics was developed by Johnson and Ruffini (1974). We used this idea to interpret the observational data from rotating BHs. We developed the imitation approach to simulate a propagation of radiation near BHs. An important problem for this approach is the diagnostics of a black-hole metric using X-ray observational data of the iron K.-line. Observations of Seyfert galaxies in the X-ray region reveal the wide emissive lines in their spectra, which can arise in inner parts of accretion disks, where the effects of General Relativity (GR) must be counted. A spectrum of a solitary emission line (the K-alpha-line of iron, for example) of a hot spot in Kerr accretion disk is simulated, depending on the radial coordinate r and the angular momentum a = J/M of a black hole, under the assumption of an equatorial circular motion of a hot spot. Basing on the results of numerical simulations it is shown that the characteristic two-peak line profile with the sharp edges arises at a large distance (about r approximate to (3-10)r(g)). The inner regions emit the line, which is observed with one maximum and extremely wide red wing. High-accuracy future spectral observations, being carried out, could detect the angular momentum a of the black hole. We analysed the different parameters of problems on the observable shape of this line and discussed some possible kinds of these shapes. The total number of analysed geodesics is about 109 (to simulate possible shapes of the K-alpha-line), so the number is great enough, especially in comparison with few geodesics in the original paper by Johnson and Ruffini (1974).
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页码:1193 / 1200
页数:8
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