Numerical simulation of hot accretion flows (IV): effects of black hole spin and magnetic field strength on the wind and the comparison between wind and jet properties
arXiv:2102.03317 · doi:10.3847/1538-4357/abfe63
Abstract
This is the fourth paper of our series of works studying winds from hot accretion flows around black holes. In the first two papers, we have shown the existence of strong winds in hot accretion flows using hydrodynamical and magnetohydrodynamical (MHD) simulations. In the third paper, by using three dimensional general relativity MHD numerical simulation data of hot accretion flows and adopting a "virtual particle trajectory" data analysis approach, we have calculated the properties of wind, such as its mass flux and velocity. However, that paper focuses only on a non-spinning black hole and SANE (standard and normal accretion). In the present paper, we extend the third paper by including cases of a rapidly rotating black hole and MAD (magnetically arrested disk). We focus on investigating the effect of spin and magnetic field on the properties of wind and jet. It is found that a larger spin and stronger magnetic field usually enhance the wind and jet. The formulae describing the mass flux, poloidal velocity, and fluxes of momentum, kinetic energy, and total energy of wind and jet are presented. One interesting finding, among others, is that even in the case of very rapidly spinning black hole where the jet is supposed to be the strongest, the momentum flux of jet is smaller than that of wind, while the total energy flux of jet is larger than that of wind by at most a factor of 10. This result suggests that wind potentially plays a more important role than jet at least for some problems in active galactic nuclei feedback.
21 pages, 16 figures, accepted for publication in ApJ
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- Evidence for A Hot Wind from High-resolution X-ray Spectroscopic Observation of the Low-luminosity Active Galactic Nucleus in NGC 7213
- Formation of episodic jets and associated flares from black hole accretion systems
- The properties of wind and jet from a super-Eddington accretion flow around a supermassive black hole
- Global Transonic Solution of Hot Accretion Flow with Thermal Conduction
- Discovery of Limb Brightening in the Parsec-scale Jet of NGC 315 through Global Very Long Baseline Interferometry Observations and Its Implications for Jet Models
- Quenching star formation with low-luminosity AGN winds
- On the Mass Loading of AGN-Driven Outflows in Elliptical Galaxies and Clusters
- Black Hole Feeding and Feedback in a Compact Galaxy
- Active galactic nuclei feedback in an elliptical galaxy (III): the impacts and fate of cosmological inflow
- Observational Constraints on Direct Electron Heating in the Hot Accretion Flows in Sgr A* and M87*
- Impact of the nonthermal electron radiation effects on the horizon scale image structure of Sagittarius A*
- A systematic study of AGN feedback in a disk galaxy I: global overview
- Heating or Cooling: Study of Advective Heat Transport in the Inflow and the Outflow of Optically Thin Advection-dominated Accretion Flows
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