On the role of the magnetic field on jet emission in X-ray binaries
arXiv:0908.2129 · doi:10.1088/0004-637X/703/1/L63
Abstract
Radio and X-ray fluxes of accreting black holes in their hard state are known to correlate over several orders of magnitude. This correlation however shows a large scatter: black hole candidates with very similar X-ray luminosity, spectral energy distribution and variability, show rather different radio luminosities. This challenges theoretical models that aim at describing both the radio and the X-ray fluxes in terms of radiative emission from a relativistic jet. More generally, it opens important questions on how similar accretion flows can produce substantially different outflows. Here we present a possible explanation for this phenomenon, based on the strong dependency of the jet spectral energy distribution on the magnetic field strength, and on the idea that the strength of the jet magnetic field varies from source to source. Because of the effect of radiative losses, sources with stronger jet magnetic field values would have lower radio emission. We discuss the implications of this scenario, the main one being that the radio flux does not necessarily provide a direct measure of the jet power. We further discuss how a variable jet magnetic field, reaching a critical value, can qualitatively explain the observed spectral transition out of the hard state.
4 pages, 2 figures. Accepted for publication on ApJ Letters
References in corpus (7)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Jets from black hole X-ray binaries: testing, refining and extending empirical models for the coupling to X-rays
- A radio-emitting outflow in the quiescent state of A0620-00: implications for modelling low-luminosity black hole binaries
- Refining the fundamental plane of accreting black holes
- Advection of Magnetic Fields in Accretion Disks: Not So Difficult After All
- A Model for Emission from Jets in X-ray Binaries: Consequences of a Single Acceleration Episode
- Jets from the faintest black holes
Cited by in corpus (31)
- The "universal" radio/X-ray flux correlation : the case study of the black hole GX 339-4
- Radiatively efficient accreting black holes in the hard state: the case study of H1743-322
- No evidence for black hole spin powering of jets in X-ray binaries
- Assessing luminosity correlations via cluster analysis: Evidence for dual tracks in the radio/X-ray domain of black hole X-ray binaries
- Fast infrared variability from a relativistic jet in GX 339-4
- Rapid optical and X-ray timing observations of GX 339-4: multi-component optical variability in the low/hard state
- Jet spectral breaks in black hole X-ray binaries
- Extreme Jet Ejections from the Black Hole X-ray Binary V404 Cygni
- Investigating the disc-jet coupling in accreting compact objects using the black hole candidate Swift J1753.5-0127
- Spectral differences between the jets in `radio loud' and `radio quiet' hard state black hole binaries
- The relation between radio and X-ray luminosity of black hole binaries: affected by inner cool disks?
- Radio-loudness in black hole transients: evidence for an inclination effect
- On the nature of the "radio quiet" black hole binaries
- High time resolution optical/X-ray cross-correlations for X-ray binaries: anti-correlations and rapid variability
- The 2018 outburst of BHXB H1743-322 as seen with MeerKAT
- The radio/X-ray correlation in X-ray binaries - Insights from a hard X-ray perspective
- X-ray Emission from Transient Jet Model in Black Hole Binaries
- Energetic and Broad Band Spectral Distribution of Emission from Astronomical Jets
- Sub-mm Jet Properties of the X-Ray Binary Swift J174526
- Chasing the break: Tracing the full evolution of a black hole X-ray binary jet with multi-wavelength spectral modeling
- Complete Multiwavelength Evolution of Galactic Black Hole Transients During Outburst Decay II: Compact Jets and X-ray Variability Properties
- ALMA/NICER observations of GRS 1915+105 indicate a return to a hard state
- Black holes: Timing and spectral properties and evolution
- Radio flaring and dual radio loud/quiet behaviour in the new candidate black hole X-ray binary MAXI J1631-472
- Radio observations of the Black Hole X-ray Binary EXO 1846-031 re-awakening from a 34-year slumber
- Disk-jet coupling changes as a possible indicator for outbursts from GX 339-4 remaining within the X-ray hard state
- Clues on jet behavior from simultaneous radio-X-ray fits of GX339-4
- MeerKAT radio detection of the Galactic black hole candidate Swift J1842.5-1124 during its 2020 outburst
- Fast X-ray/IR observations of the black hole transient Swift~J1753.5--0127: from an IR lead to a very long jet lag
- An Observational Signature of Sub-Equipartition Magnetic Fields in the Spectra of Black Hole Binaries
- Tracking optical variability and outflows across the accretion states of the black hole transient MAXI J1820+070