Jet-dominated advective systems: radio and X-ray luminosity dependence on the accretion rate
arXiv:astro-ph/0603731 · doi:10.1111/j.1365-2966.2006.10383.x
Abstract
We present a novel method to measure the accretion rate of radio emitting X-ray binaries (XRBs) and active galactic nuclei (AGN) independently of the X-ray luminosity. The radio emission of the jet is used as a tracer for the accretion rate and is normalised using sources of known accretion rates: island state neutron stars and efficiently radiating black holes close to a state transition. We show that the radio power in black holes and neutron stars is comparable for a given mass accretion rate and verify empirically the assumed analytic scaling of the radio luminosity with accretion rate. As our accretion measure is independent of the X-ray luminosities, we can search for radiatively inefficient accretion in black holes by comparing the X-ray luminosities with the accretion rate in XRBs and AGN. While the X-ray luminosity of efficiently radiating objects scales linearly with accretion rate, the scaling of hard state black holes is quadratical, in agreement with theoretical models. We show that the turnover from the inefficient quadratic scaling to the linear scaling has to occur at accretion rates of 1-10 % Eddington both in XRBs and AGN. The comparison of both accretion states supports the idea that in a black hole in the hard state some accretion power is advected into the black hole while the jet power exceeds the X-ray luminosity: these are therefore jet-dominated advective systems.
Accepted for publication in MNRAS
Cited by in corpus (47)
- Modelling the behaviour of accretion flows in X-ray binaries
- Global optical/infrared - X-ray correlations in X-ray binaries: quantifying disc and jet contributions
- Measuring the kinetic power of AGN in the radio mode
- Accretion states and radio loudness in Active Galactic Nuclei: analogies with X-ray binaries
- The radio/X-ray domain of black hole X-ray binaries at the lowest radio luminosities
- A transient radio jet in an erupting dwarf nova
- The jet-powered optical nebula of Cygnus X-1
- The proton low-mass microquasar: high-energy emission
- New Insights on the QSO Radio-Loud/Radio-Quiet Dichotomy: SDSS Spectra in the Context of the 4D Eigenvector1 Parameter Space
- The variability plane of accreting compact objects
- The spectral energy distribution of quiescent black hole X-ray binaries: new constraints from Spitzer
- Magnetic field effects on neutrino production in microquasars
- Measuring the accretion rate and kinetic luminosity functions of supermassive black holes
- An overview of jets and outflows in stellar mass black holes
- Three episodes of jet activity in the FRII radio galaxy B0925+420
- Hot Accretion With Conduction: Spontaneous Thermal Outflows
- The Fundamental Plane of Black Hole Activity in the Optical Band
- Dwarf nova-type cataclysmic variable stars are significant radio emitters
- The clustering and bias of radio-selected AGN and star-forming galaxies in the COSMOS field
- Weighing the black holes in ultraluminous X-ray sources through timing
- Spectral differences between the jets in `radio loud' and `radio quiet' hard state black hole binaries
- The large-scale jet-powered radio nebula of Circinus X-1
- Parallel tracks in infrared versus X-ray emission in black hole X-ray transient outbursts: a hysteresis effect?
- Jet power extracted from ADAF and the applications to X-ray binaries and radio galaxy FR dichotomy
- The INTEGRAL view on Black Hole X-ray Binaries
- Timing evidence in determining the accretion state of the Seyfert galaxy NGC 3783
- Coupled radio and X-ray emission and evidence for discrete ejecta in the jets of SS 433
- Up and Down the Black Hole Radio/X-ray Correlation: the 2017 mini-outbursts from Swift J1753.5-0127
- Cosmic evolution of radio-AGN feedback: confronting models with data
- LeMMINGs. III. The e-MERLIN Legacy Survey of the Palomar sample. Exploring the origin of nuclear radio emission in active and inactive galaxies through the [O III] -- radio connection
- Internal shocks driven by accretion flow variability in the compact jet of the black hole binary GX 339-4
- Disk-Jet quenching of the Galactic Black Hole Swift J1753.5-0127
- The variable radio counterpart and possible large-scale jet of the new Z-source XTE J1701-462
- Dark jets in the soft X-ray state of black hole binaries?
- Radio Emission from Accreting Isolated Black Holes in Our Galaxy
- ALMA observations of A0620-00: fresh clues on the nature of quiescent black hole X-ray binary jets
- Simulations of neutrino and gamma-ray production from relativistic black-hole microquasar jets
- Coronal Properties of Low-Accreting AGNs using Swift, XMM-Newton and NuSTAR Observations
- Evidence for changes in the radiative efficiency of transient black hole X-ray binaries
- Jet disc coupling in black hole binaries
- Relativistic Magnetized Astrophysical Plasma Outflows in Black-Hole Microquasars
- Properties of Ultralight Bosons from Spins of Heavy Quasars via Superradiance
- The origin of UV/optical emission in the black hole low-mass X-ray binary Swift J1753.5-0127
- The Accretion-Ejection Connection in the Black Hole X-ray Binary MAXI J1820070
- Probing the detectability of electromagnetic signatures from Galactic isolated black holes
- Galactic X-ray binary jets
- Jet-dominated advective systems of all mass scales