The magnetic field in the X-ray corona of Cygnus X-1
arXiv:1212.2040 · doi:10.1093/mnras/sts574
Abstract
The different electron distributions in the hard and soft spectral states (HS and SS) of BH binaries could be caused by kinetic processes and changing because of varying physical conditions in the corona. In presence of a magnetic field in the corona, the electron distribution can appear thermal, even when acceleration mechanisms would produce non thermal distributions. This is due to fast and efficient thermalization through synchrotron self-absorption. We have analyzed data from 6 years of observations of Cygnus X-1 with the INTEGRAL observatory and produced 12 high-quality, stacked broad-band hard X-ray spectra representative of the whole range of spectral shapes observed. We then fit these spectra with hybrid thermal/non-thermal Comptonization models and study the evolution of the physical parameters of the accretion flow across the spectral transition. In particular, we use the BELM model to constrain the magnetic field in the corona through its effects on the coronal emission. Indeed, the hot electrons of the X-ray corona produce soft (optical-UV) synchrotron radiation which is then Comptonized and may affect the temperature of the electrons through Compton cooling. We find that in the SS, the emission is dominated by Comptonization of the disc photons and the magnetic field is at most of the order of 1E+06 G. In the hard states, the data are consistent with a pure synchrotron self-Compton model. If the non-thermal excess observed above a few hundred keV in the HS is produced in the same region as the bulk of the thermal Comptonization, we obtain an upper limit on the coronal magnetic field of about 1E+05 G. If, on the other hand, the non-thermal excess is produced in a different location, the constraints on the magnetic field in the HS are somewhat relaxed and the upper limit rises to 1E+07 G. We discuss these constraints in the context of current accretion flow models.
MNRAS, in press, 15 pages, 10 figures, 5 tables
References in corpus (9)
- Modelling the behaviour of accretion flows in X-ray binaries
- Separation of two contributions to the high energy emission of Cygnus X-1: Polarization measurements with INTEGRAL SPI
- INTEGRAL SPI All-Sky View in Soft Gamma Rays: Study of Point Source and Galactic Diffuse Emissions
- The synchrotron boiler and the spectral states of black hole binaries
- On the origin of spectral states in accreting black holes
- Simulating radiation and kinetic processes in relativistic plasmas
- Spectral variability of GX 339-4 in a hard-to-soft state transition
- An intense state of hard X-ray emission of Cyg X-1 observed by INTEGRAL coincident with TeV measurements
- Hard X-ray emission of the microquasar GX 339-4 in the low/hard state
Cited by in corpus (38)
- Formation of Magnetically Truncated Accretion Disks in 3D Radiation-Transport Two-Temperature GRMHD Simulations
- Accretion disks and coronae in the X-ray flashlight
- High-energy gamma-ray emission from Cyg X-1 measured by Fermi and its theoretical implications
- The energetics of relativistic magnetic reconnection: ion-electron repartition and particle distribution hardness
- A dichotomy between the hard state spectral properties of black hole and neutron star X-ray~binaries
- The multi-wavelength polarization of Cygnus X-1
- Gamma-ray observations of Cygnus X-1 above 100 MeV in the hard and soft states
- Spinning black holes magnetically connected to a Keplerian disk -- Magnetosphere, reconnection sheet, particle acceleration and coronal heating
- Lepto-hadronic model for the broadband emission of Cygnus X-1
- Hard particle spectra of galactic X-ray sources by relativistic magnetic reconnection in laser lab
- The INTEGRAL view on Black Hole X-ray Binaries
- Hard X-ray variability of V404 Cyg during the 2015 outburst
- Spectral and timing evolution of the bright failed outburst of the transient black hole Swift J174510.8-262411
- New insights on the puzzling LMXB 1RXS J180408.9-342058: the intermediate state, the clocked type-I X-ray bursts and much more
- Energetic and Broad Band Spectral Distribution of Emission from Astronomical Jets
- Potential origin of the state-dependent high-energy tail in the black hole microquasar Cygnus X-1 as seen with INTEGRAL
- Gamma-ray activity of Seyfert galaxies and constraints on hot accretion flows
- The origin of seed photons for Comptonization in the black hole binary Swift J1753.5-0127
- Broadband X-ray Spectral and Timing Analyses of the Black Hole Binary Candidate Swift J1658.2-4242: Rapid Flux Variation and the Turn-on of a Transient QPO
- On the nature of the soft gamma-ray emission in the hard state of the black hole transient GRS 1716-249
- Influence of the Vacuum Polarization Effect on the Motion of Charged Particles in the Magnetic Field around a Schwarzschild Black Hole
- Resonance crossing of a charged body in a magnetized Kerr background: an analogue of extreme mass ratio inspiral
- Accretion in active galactic nuclei and disk-jet coupling
- Astroparticles from X-ray Binary Coronae
- Origin of Multi-band Emission from the Microquasar Cygnus X--1
- Observations of Cygnus X-1 in the MeV band by the INTEGRAL imager
- Testing jet geometries and disk-jet coupling in the neutron star LMXB 4U 0614+091 with the internal shocks model
- INTEGRAL discovery of a high-energy tail in the microquasar Cygnus X-3
- Using the bispectrum to probe radio X-ray correlations in GRS 1915+105
- Magnetic Penrose process in the magnetized Kerr spacetime
- On the role and origin of nonthermal electrons in hot accretion flows
- Distinct accretion modes of Cygnus X-1 revealed from hard X-rays
- Spectral components in black hole X-ray binaries
- An Integrated Model for the Production of X-Ray Time Lags and Quiescent Spectra from Homogeneous and Inhomogeneous Black Hole Accretion Coronae
- Black holes shielded by magnetic fields
- NuSTAR spectral analysis beyond 79 keV with stray light
- Spin Precession in magnetized Kerr spacetime
- Unprecedentedly bright X-ray flaring in Cygnus X-1 observed by INTEGRAL