Accretion geometry of the black-hole binary Cygnus X-1 from X-ray polarimetry
arXiv:1812.09907 · doi:10.1038/s41550-018-0489-x
Abstract
Black-hole binary (BHB) systems comprise a stellar-mass black hole and a closely orbiting companion star. Matter is transferred from the companion to the black hole, forming an accretion disk, corona and jet structures. The resulting release of gravitational energy leads to emission of X-rays. The radiation is affected by special/general relativistic effects, and can serve as a probe of the properties of the black hole and surrounding environment, if the accretion geometry is properly identified. Two competing models describe the disk-corona geometry for the hard spectral state of BHBs, based on spectral and timing measurements. Measuring the polarization of hard X-rays reflected from the disk allows the geometry to be determined. The extent of the corona differs between the two models, affecting the strength of relativistic effects (e.g., enhancement of polarization fraction and rotation of polarization angle). Here, we report observational results on linear polarization of hard X-ray (19-181 keV) emission from a BHB, Cygnus X-1, in the hard state. The low polarization fraction, <8.6% (upper limit at 90% confidence level), and the alignment of the polarization angle with the jet axis show that the dominant emission is not influenced by strong gravity. When considered together with existing spectral and timing data, our result reveals that the accretion corona is either an extended structure, or is located far from the black hole in the hard state of Cygnus X-1.
44 pages, 15 figures, 1 table
References in corpus (6)
- X-ray Properties of Black-Hole Binaries
- Modelling the behaviour of accretion flows in X-ray binaries
- A transient relativistic radio jet from Cygnus X-1
- New Constraints on the Black Hole Low/Hard State Inner Accretion Flow with NuSTAR
- Evolution of the reverberation lag in GX 339-4 at the end of an outburst
- Calibration and performance studies of the balloon-borne hard X-ray polarimeter PoGO+
Cited by in corpus (22)
- Polarized x-rays constrain the disk-jet geometry in the black hole x-ray binary Cygnus X-1
- vKompth: A variable Comptonisation model for low-frequency quasi-periodic oscillations in black-hole X-ray binaries
- XL-Calibur -- a second-generation balloon-borne hard X-ray polarimetry mission
- The Effect of Returning Radiation on Relativistic Reflection
- A new lepto-hadronic model applied to the first simultaneous multiwavelength data set for Cygnus X--1
- The comptonizing medium of the black-hole X-ray binary MAXI~J1535571 through type-C quasi-periodic oscillations
- A spectral study of the black hole X-ray binary MAXI J1820+070 with AstroSat and NuSTAR
- The INTEGRAL view on Black Hole X-ray Binaries
- Potential origin of the state-dependent high-energy tail in the black hole microquasar Cygnus X-1 as seen with INTEGRAL
- Detection of X-ray polarized emission and accretion-disk winds with IXPE and NICER in the black-hole X-ray binary 4U 1630-47
- Gamma-ray and Neutrino Signals from Accretion Disk Coronae of Active Galactic Nuclei
- High hard X-ray polarization in Cygnus X-1 confined to the intermediate hard state: evidence for a variable jet component
- Truncated accretion discs in black hole X-ray binaries: dynamics and variability signatures
- On measuring the Hubble constant with X-ray reverberation mapping of active galactic nuclei
- Gamma-Ray Polarimetry
- Soft gamma-ray polarimetry with COSI using maximum likelihood analysis
- X-ray polarimetry-timing
- The Relative Importance of Faraday Rotation and QED Birefringence for the Linear Polarization of X-rays from Mass Accreting Black Holes
- Polarized X-rays Correlated with Short--Timescale Variability of Cygnus X-1
- Boson Cloud Atlas: Direct mass measurements of superradiance clouds near black holes
- Hard X-ray Polarimetry -- An overview of the method, science drivers and recent findings
- Performance of the X-Calibur Hard X-Ray Polarimetry Mission during its 2018/19 Long-Duration Balloon Flight