Counter-Rotating Accretion Discs
arXiv:1408.5626 · doi:10.1093/mnras/stu2131
Abstract
Counter-rotating discs can arise from the accretion of a counter-rotating gas cloud onto the surface of an existing co-rotating disc or from the counter-rotating gas moving radially inward to the outer edge of an existing disc. At the interface, the two components mix to produce gas or plasma with zero net angular momentum which tends to free-fall towards the disc center. We discuss high-resolution axisymmetric hydrodynamic simulations of a viscous counter-rotating disc for cases where the two components are vertically separated and radially separated. The viscosity is described by an isotropic viscosity including all terms in the viscous stress tensor. For the vertically separated components a shear layer forms between them. The middle of this layer free-falls to the disk center. The accretion rates are increased by factors over that of a conventional disc rotating in one direction with the same viscosity. The vertical width of the shear layer and the accretion rate are strongly dependent on the viscosity and the mass fraction of the counter-rotating gas. In the case of radially separated components where the inner disc co-rotates and the outer disc rotates in the opposite direction, a gap between the two components opens and closes quasi-periodically. The accretion rates are times larger than those for a disc rotating in one direction with the same viscosity.
11 pages, 13 figures, 1 table
References in corpus (2)
Cited by in corpus (12)
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- Four phases of angular-momentum buildup in high-z galaxies: from cosmic-web streams through an extended ring to disc and bulge
- A duality in the origin of bulges and spheroidal galaxies
- Dynamical evidence of the sub-parsec counter-rotating disc for a close binary of supermassive black holes in the nucleus of NGC 1068
- RADs energetics and constraints on emerging tori collisions around super-massive Kerr Black Holes
- Jet collision with accreting tori around SMBHs. GRHD and light surfaces constraints in aggregates of misaligned tori
- Embedded BHs and multipole globules: Clustered misaligned thick accretion disks around static SMBHs
- Disk sources of the Kerr and Tomimatsu-Sato spacetimes: construction and physical properties
- Lense-Thirring effect on accretion flow from counter-rotating tori
- From the Circumnuclear Disk in the Galactic Center to thick, obscuring tori of AGNs -- Modelling the molecular emission of a parsec-scale torus as found in NGC1068
- Magnetized black holes: the role of rotation, boost, and accretion in twisting the field lines and accelerating particles
- Constraints on two accretion disks centered on the equatorial plane of a Kerr SMBH