Testing General Relativity's No-Hair Theorem with X-Ray Observations of Black Holes
arXiv:1601.02055 · doi:10.1103/PhysRevD.93.044020
Abstract
Despite its success in the weak gravity regime, General Relativity (GR) has yet to be verified in the regime of strong gravity. In this paper, we present the results of detailed ray tracing simulations aiming at clarifying if the combined information from X-ray spectroscopy, timing, and polarization observations of stellar mass and supermassive black holes can be used to test GR's no-hair theorem. The latter states that stationary astrophysical black holes are described by the Kerr-family of metrics with the black hole mass and spin being the only free parameters. We use four "non-Kerr metrics", some phenomenological in nature and others motivated by alternative theories of gravity, and study the observational signatures of deviations from the Kerr metric. Particular attention is given to the case when all the metrics are set to give the same Innermost Stable Circular Orbit (ISCO) in quasi-Boyer Lindquist coordinates. We give a detailed discussion of similarities and differences of the observational signatures predicted for BHs in the Kerr metric and the non-Kerr metrics. We emphasize that even though some regions of the parameter space are nearly degenerate even when combining the information from all observational channels, X-ray observations of very rapidly spinning black holes can be used to exclude large regions of the parameter space of the alternative metrics. Although it proves difficult to distinguish between the Kerr and non-Kerr metrics for some portions of the parameter space, the observations of very rapidly spinning black holes like Cyg X-1 can be used to rule out large regions for several black hole metrics.
10 pages, 10 figures, accepted for publication in PRD
References in corpus (14)
- X-ray Properties of Black-Hole Binaries
- X-ray reverberation around accreting black holes
- A Metric for Rapidly Spinning Black Holes Suitable for Strong-Field Tests of the No-Hair Theorem
- Testing the general relativistic ''no-hair'' theorems using the galactic center black hole SgrA*
- Photon Rings around Kerr and Kerr-like Black Holes
- Testing the space-time geometry around black hole candidates with the analysis of the broad K iron line
- Probing the space-time geometry around black hole candidates with the resonance models for high-frequency QPOs and comparison with the continuum-fitting method
- Constraints on the spacetime geometry around 10 stellar-mass black hole candidates from the disk's thermal spectrum
- Thin accretion disks onto brane world black holes
- Iron K and Compton hump reverberation in SWIFT J2127.4+5654 and NGC 1365 revealed by NuSTAR and XMM-Newton
- The Event Horizon Telescope: exploring strong gravity and accretion physics
- Using iron line reverberation and spectroscopy to distinguish Kerr and non-Kerr black holes
- Optimization of the Design of the Hard X-ray Polarimeter X-Calibur
- X-ray Probes of Black Hole Accretion Disks for Testing the No-Hair Theorem
Cited by in corpus (23)
- Testing the nature of dark compact objects: a status report
- Testing the black hole "no-hair" hypothesis
- Testing the No-Hair Theorem with Observations of Black Holes in the Electromagnetic Spectrum
- Iron K line of Kerr black holes with scalar hair
- Testing general relativity with the reflection spectrum of the supermassive black hole in 1H0707495
- Towards precision tests of general relativity with black hole X-ray reflection spectroscopy
- Testing conformal gravity with the supermassive black hole in 1H0707-495
- Testing conformal gravity with astrophysical black holes
- Measuring the Innermost Stable Circular Orbits of Supermassive Black Holes
- The X-ray Polarization of the Accretion Disk Coronae of Active Galactic Nuclei
- Testing the Kerr metric with the iron line and the KRZ parametrization
- Predicting the X-ray polarization of type-2 Seyfert galaxies
- New Constraints on the Spin of the Black Hole Cygnus X-1 and the Physical Properties of its Accretion Disk Corona
- Difficulties of Quantitative Tests of the Kerr-Hypothesis with X-Ray Observations of Mass Accreting Black Holes
- Testing general relativity with the stellar-mass black hole in LMC X-1 using the continuum-fitting method
- Singularity-free black holes in conformal gravity: new observational constraints
- The Polarization of X-rays from Warped Black Hole Accretion Disks
- Simulations of the Fe K-alpha Energy Spectra from Gravitationally Microlensed Quasars
- The Effect of Microlensing On the Observed X-ray Energy Spectra of Gravitationally Lensed Quasars
- Generally Applicable Formalism for Modeling the Observable Signatures of Inflows, Outflows, and Moving Coronal Plasma Close to Kerr Black Holes
- Relativistic Reflection Modeling in AGN and Related Variability from PCA: A Brief Review
- Resonant interactions from dynamical perturbers on generic orbits around an extreme mass ratio inspiral
- Using Simulations of Black Holes to Study General Relativity and the Properties of Inner Accretion Flow