Magnetized advective accretion flows: formation of magnetic barriers in Magnetically Arrested Discs
arXiv:1802.01594 · doi:10.1093/mnras/sty332
Abstract
We discuss the importance of large scale strong magnetic field in the removal of angular momentum outward, as well as the possible origin of different kinds of magnetic barrier in advective, geometrically thick, sub-Keplerian accretion flows around black holes. The origin of this large scale strong magnetic field near the event horizon is due to the advection of the magnetic flux by the accreting gas from the environment, say, the interstellar medium or a companion star, because of flux freezing. In this simplest vertically averaged, 1.5-dimensional disc model, we choose the maximum upper limit of the magnetic field, which the disc around a black hole can sustain. In this so called magnetically arrested disc (MAD) model, the accreting gas either decelerates or faces the magnetic barrier near the event horizon by the accumulated magnetic field depending on the geometry. The magnetic barrier may knock the matter to infinity. We suggest that these types of flow are the building block to produce jets and outflows in the accreting system. We also find that in some cases, when matter is trying to go back to infinity after knocking the barrier, matter is prevented being escaped by the cumulative action of strong gravity and the magnetic tension, hence by another barrier. In this way, magnetic field can lock the matter in between these two barriers and it might be a possible explanation for the formation of episodic jet.
16 pages including 15 figures; Accepted for publication in MNRAS
References in corpus (5)
- X-ray Properties of Black-Hole Binaries
- Magnetically Arrested Disks and Origin of Poynting Jets: Numerical Study
- Primordial black holes as seeds of magnetic fields in the universe
- Hydromagnetics of advective accretion flows around black holes: Removal of angular momentum by large scale magnetic stresses
- Parameter space study of magnetohydrodynamic flows around magnetized compact objects
Cited by in corpus (10)
- Ultra-luminous X-ray sources as magnetically powered sub-Eddington advective accretion flows around stellar mass black holes
- FSRQ/BL Lac dichotomy as the magnetized advective accretion process around black holes: a unified classification of blazars
- Episodic Jets from Black Hole Accretion Disks
- Role of magnetically dominated disc-outflow symbiosis on bright hard-state black hole sources: ultra-luminous X-ray sources to quasars
- Angular momentum transport and thermal stabilization of optically thin, advective accretion flows through large-scale magnetic fields
- Powerful Jets from Radiatively Efficient Disks, a Decades-Old Unresolved Problem in High Energy Astrophysics
- GRMHD simulations of black hole accretion variabilities: Implications to hard state X-ray binary transients
- Nucleosynthesis in advective disc and outflow: possible explanation for overabundances in winds from X-ray binaries
- Relativistic magnetised perturbations: magnetic pressure vs magnetic tension
- Accretion into black hole, and formation of magnetically arrested accretion disks