Limits on luminosity and mass accretion rate of a radiation pressure dominated accretion disc
arXiv:1502.02892 · doi:10.1093/mnras/stv269
Abstract
There is a maximum for the gravity of a black hole in the vertical direction in the accretion disc. Outflows may probably be driven from the disc if the radiation flux of the disc is greater than a critical value corresponding to the maximal vertical gravity. We find that outflows are driven by the radiation force from the disc if the accretion rate is greater than the Eddington rate. The radiation of the disc is therefore limited by such outflows. The disc luminosity, L=L_Edd\propto ln mdot, at large-mdot cases. The Eddington ratio of the disc is ~3 for mdot~100, which is significantly lower than that of a conventional slim disc without outflows. This implies that the emission from some ultra-luminous X-ray sources with highly super Eddington luminosity should be Doppler beamed, or intermediate mass black holes are in these sources instead of stellar mass black holes. The spectra of the discs with outflows are saturated in the high frequency end provided mdot>2. We suggest that the saturated emission can be observed to estimate the masses of the black holes accreting at high rates, such as the narrow-line Seyfert galaxies, with the model calculations. The rate of the mass accreted by the black hole is always around the Eddington rate even if the mass accretion rate at the outer radius is very high, because most of the gas is removed into the outflows. This implies that the luminous quasars at high redshifts z>6 should have grown up through persistent accretion at a rate close to the Eddington rate.
8 pages, accepted by MNRAS
References in corpus (9)
- A luminous quasar at a redshift of z = 7.085
- The Nature of SS433 and the Ultraluminous X-ray Sources
- On the Fraction of Quasars with Outflows
- Why Is Supercritical Disk Accretion Feasible?
- A new fundamental plane for radiatively efficient black-hole sources
- Radiation Pressure-supported Accretion Disks: Vertical Structure, Energy Advection, and Convective Stability
- Driving the Growth of the Earliest Supermassive Black Holes with Major Mergers of Host Galaxies
- XMM observations of BAL Quasars with polar outflows
- Metal-Enriched Outflows in the Ultra-Luminous infrared Quasar Q1321+058
Cited by in corpus (9)
- Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. IV. H Time Lags and Implications for Super-Eddington Accretion
- A model for the possible connection between tidal disruption event and quasi-periodic eruption in GSN 069
- A magnetic accretion disk-outflow model for changing look active galactic nuclei
- A supercritical accretion disk with radiation-driven outflows
- Thermal Equilibrium Solutions of Black Hole Accretion Flows: Outflows VS Advection
- Growth of massive black holes at high-z via accretion predominantly driven by magnetic outflows
- Probing the tidal disruption event iPTF16axa with CLOUDY and disc-wind models
- Evolution of Tidal Disruption Event Disks with Magnetically Driven Winds
- Could an X-ray Flare after GRB 170817A Originate from a Post-merger Slim Accretion Disc?