Testing the No-Hair Theorem with Observations in the Electromagnetic Spectrum. IV. Relativistically Broadened Iron Lines
arXiv:1202.6069 · doi:10.1088/0004-637X/773/1/57
Abstract
According to the no-hair theorem, astrophysical black holes are fully characterized by their masses and spins and are described by the Kerr metric. This theorem can be tested observationally by measuring (at least) three different multipole moments of the spacetimes of black holes. In this paper, we calculate the profiles of fluorescent iron lines emitted from the accretion flows around black hole candidates within a framework that allows us to perform the calculation as a function of its mass and spin as well as of a free parameter that measures potential deviations from the Kerr metric. We show that such deviations lead to line profiles that are significantly altered and may exhibit a modified flux ratio of the two peaks in their characteristic double-peaked shape. We also show that the disk inclination can be measured independently of the spin and the deviation parameter at low to intermediate inclination angles as in the case of Kerr black holes. We estimate the precision that near-future X-ray missions such as Astro-H and ATHENA+ are required to achieve in order to resolve deviations from the Kerr metric in iron line profiles and show that constraints on such deviations will be strongest for rapidly spinning black holes. More generally, we show that measuring the line profile with a precision of ~5% at disk inclinations of 30 or 60 degrees constraints the deviation parameter to order unity for values of the spin a>0.5M.
10 pages, 7 figures, accepted for publication in ApJ. Includes the additional result that the disk inclination can be measured independently of the spin and the deviation parameter at low to intermediate inclinations. A selection of iron line profiles is available for download at http://www.science.uwaterloo.ca/~tjohanns/
References in corpus (15)
- X-ray Properties of Black-Hole Binaries
- Constraining Black Hole Spin Via X-ray Spectroscopy
- Relativistic X-ray Lines from the Inner Accretion Disks Around Black Holes
- Testing the general relativistic ''no-hair'' theorems using the galactic center black hole SgrA*
- Broad iron K-alpha emission lines as a diagnostic of black hole spin
- Prospects for Probing the Spacetime of Sgr A* with Pulsars
- Relativistic iron K X-ray Reverberation in NGC 4151
- Tests of General Relativity in the Strong Gravity Regime Based on X-Ray Spectropolarimetric Observations of Black Holes in X-Ray Binaries
- Systematic Study of Event Horizons and Pathologies of Parametrically Deformed Kerr Spacetimes
- Testing black hole no-hair theorem with OJ287
- Masses of Nearby Supermassive Black Holes with Very-Long Baseline Interferometry
- (Sort of) Testing relativity with extreme mass ratio inspirals
- Using Millimeter VLBI to Constrain RIAF Models of Sagittarius A*
- Extremal energy shifts of radiation from a ring near a rotating black hole
- Inner Accretion Disk Edges in a Kerr-Like Spacetime
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