Rayleigh-Taylor Instability in Two-Component Relativistic Jets
arXiv:1705.10425 · doi:10.1093/mnras/stx1770
Abstract
Relativistic jets associated with active galactic nuclei and gamma-ray bursts propagate over huge distances without significant loss of momentum. At the same time they are bright emitters, which is indicative of strong energy dissipation. This points towards a mechanism of internal dissipation which does not result in a global disruption of the flow. One possibility is internal shocks and another one is turbulence driven by local instabilities. Such instabilities can be triggered when a freely expanding jet is reconfined by either the cocoon or external gas pressure. In this paper we study the dynamics of two-component spine-sheath hydrodynamic jets coming into pressure equilibrium with external gas using 2D computer simulations. We find that the jet oscillations lead to a rapid onset of Rayleigh-Taylor-type instabilities, which results in additional internal dissipation and mixing of the jet components. Although slightly different in details, this outcome holds both for the heavy-spine-light-sheath and light-spine-heavy-sheath configurations. The results may provide an explanation to the spatial flaring observed in some AGN jets on kpc-scales.
6 pages, 4 figures; accepted for publication in MNRAS; texts revised from v1
References in corpus (7)
- Magnetic acceleration of relativistic AGN jets
- MPI-AMRVAC for Solar and Astrophysics
- 3D Relativistic Magnetohydrodynamic Simulations of Magnetized Spine-Sheath Relativistic Jets
- Kink instabilities in jets from rotating magnetic fields
- Transverse stability of relativistic two-component jets
- Rotation and toroidal magnetic field effects on the stability of two-component jets
- On the Linear Stability of Magnetized Jets Without Current Sheets - Relativistic Case
Cited by in corpus (15)
- The structure of hydrodynamic -ray burst jets
- High efficiency photospheric emission entailed by formation of a collimation shock in gamma-ray bursts
- Fast-spinning black holes inferred from symmetrically limb-brightened radio jets
- Propagation, cocoon formation, and resultant destabilization of relativistic jets
- Linear Theory of the Rayleigh-Taylor Instability at a Discontinuous Surface of a Relativistic Flow
- Intermittent hydrodynamic jets in collapsars do not produce GRBs
- Magnetic inhibition of the recollimation instability in relativistic jets
- Triggering mixing and deceleration in FRI jets: a solution
- Intermittent mildly magnetized jets as the source of GRBs
- The different flavors of extragalactic jets: the role of relativistic flow deceleration
- Flux variability from ejectas in structured relativistic jets with large-scale magnetic fields
- On the deceleration of Fanaroff-Riley Class I jets: mass loading of magnetized jets by stellar winds
- Dissipative processes and their role in the evolution of radio galaxies
- The reconfinement of AGN jets
- Effects of radiative losses on the relativistic jets of high-mass microquasars