Observational evidence for AGNs feedback at parsec scale
arXiv:1105.4822 · doi:10.1088/0004-637X/737/1/23
Abstract
In a hot accretion flow, the radiation from the innermost region of the flow propagates outward and heats the electrons at large radii via Compton scattering. It has been shown in previous works that if the radiation is strong enough, $L\ga 2%L_{\rm Edd}$, the electrons at the Bondi radius () will be heated to be above the virial temperature thus the accretion will be stopped. The accretion will recover after the gas cools down. This results in the oscillation of the black hole activity. In this paper we show that this mechanism is the origin of the intermittent activity of some compact young radio sources. Such intermittency is required to explain the population of these sources. We calculate the timescales of the black hole oscillation and find that the durations of active and inactive phases are $3\times 10^4 (0.1/α)(M/10^8\msun) (L/2%L_{\rm Edd})^{-1/2} {\rm yr}$ and $10^5(α/0.1)(M/10^8\msun) {\rm yr}$, respectively, consistent with those required to explain observations. Such kind of feedback occurring at parsec scale should be common in low-luminosity AGNs and should be considered when we consider their matter and energy output.
15 pages, 1 figure; ApJ in press
References in corpus (10)
- Modelling the behaviour of accretion flows in X-ray binaries
- Advection-Dominated Accretion and the Black Hole Event Horizon
- A Magnetohydrodynamic Model for the Formation of Episodic Jets
- On the Evolution of and High-Energy Emission from GHz-Peaked-Spectrum Sources
- In search of dying radio sources in the local universe
- X-ray Properties of the GigaHertz-Peaked and Compact Steep Spectrum Sources
- On different types of instabilities in black hole accretion discs. Implications for X-ray binaries and AGN
- Global Compton heating and cooling in hot accretion flows
- Revisiting the Thermal Stability of Radiation-dominated Thin Disks
- Studies of Thermally Unstable Accretion Disks around Black Holes with Adaptive Pseudo-Spectral Domain Decomposition Method I. Limit-Cycle Behavior in the Case of Moderate Viscosity
Cited by in corpus (15)
- Hot Accretion Flows Around Black Holes
- AGN feedback in an isolated elliptical galaxy: the effect of strong radiative feedback in the kinetic mode
- General-relativistic model of hot accretion flows with global Compton cooling
- Radiation driven outflow in active galactic nuclei: the feedback effects of scattered and reprocessed photons
- Transition of BH feeding from the quiescent regime into star-forming cold disk regime
- Circumnuclear Media of Quiescent Supermassive Black Holes
- X-ray Properties of Radio-Selected Dual Active Galactic Nuclei
- Magnetohydrodynamic Winds Driven by the Line Force from the Standard Thin Disk around Supermassive Black Holes. I. The Case of Weak Magnetic Field
- Hidden AGNs in Early-Type Galaxies
- Thermal wind from hot accretion flows at large radii
- What is the real accretion rate onto a black hole for low angular momentum accretion?
- The Effect of Accretion Environment at Large Radius on Hot Accretion Flows
- Effect of nuclear stars gravity on quasar radiation feedback on the parsec-scale
- Global Neutrino Heating in Hyperaccretion Flows
- Radiative cooling effects on black hole hot accretion flows around the sub-Bondi radius