The physics of the MHD disk-jet transition in binary systems: jetted spiral walls launched from disk spiral arms
arXiv:2112.02111 · doi:10.3847/1538-4357/ac3f31
Abstract
We present a detailed physical analysis of the jet launching mechanism of a circum-stellar disk that is located in a binary system. Applying 3D resistive MHD simulations, we investigate the local and global properties of the system, such as the angular momentum transport and the accretion and ejection mass fluxes. In comparison to previous works, for the first time, we have considered the full magnetic torque, the presence of an outflow, thus the angular momentum transport by vertical motion, and the binary torque. We discuss its specific 3D structure, and how it is affected by tidal effects. We find that the spiral structure evolving in the disk is {\em launched into the outflow}. We propose to call this newly discovered structure a {\em jet spiral wall}. These spiral features follow the same time evolution, with the jet spiral somewhat lagging the disk spiral. We find that the vertical transport of angular momentum has a significant role in the total angular momentum budget also in a binary system. The same holds for the magnetic torque, however, the contribution from the -derivative of magnetic pressure and the stresses are small. The gravity torque arising from the time-dependent 3D Roche potential becomes essential, as it constitutes the fundamental cause for all 3D effects appearing in our disk-jet system. Quantitatively, we find that the disk accretion rate in a binary system increases by compared to a disk around a single star. The disk wind mass flux increases by even 50\%.
32 pages,24 figures, Accepted for publication in Astrophysical Journal, comments are welcome
References in corpus (15)
- PLUTO: a Numerical Code for Computational Astrophysics
- MHD simulations of jet acceleration from Keplerian accretion disks: the effects of disk resistivity
- Viscous Hydrodynamics Simulations of Circumbinary Accretion Discs: Variability, Quasi-Steady State, and Angular Momentum Transfer
- Hydrodynamic Torques in Circumbinary Accretion Disks
- Superluminal non-ballistic jet swing in the quasar NRAO 150 revealed by mm-VLBI
- Can Protostellar Jets Drive Supersonic Turbulence in Molecular Clouds?
- Modelling MHD accretion-ejection - from the launching area to propagation scales
- Magnetically-driven jets and winds from weakly magnetized accretion disks
- Binary system and jet precession and expansion in G35.20-0.74N
- Protostellar Outflow Evolution in Turbulent Environments
- Giant protostellar flares: accretion-driven accumulation and reconnection-driven ejection of magnetic flux in protostars
- A ring accelerator? Unusual jet dynamics in the IceCube candidate PKS 1502+106
- Near-IR imaging towards a puzzling YSO precessing jet
- The precessing jets of classical nova YZ Reticuli
- Peculiarities of the Accretion Flow in the System HL CMa