Local Simulations of Instabilities in Relativistic Jets I: Morphology and Energetics of the Current-Driven Instability
arXiv:1201.2681 · doi:10.1111/j.1365-2966.2012.20721.x
Abstract
We present the results of a numerical investigation of current-driven instability in magnetized jets. Utilizing the well-tested, relativistic magnetohydrodynamic code Athena, we construct an ensemble of local, co-moving plasma columns in which initial radial force balance is achieved through various combinations of magnetic, pressure, and rotational forces. We then examine the resulting flow morphologies and energetics to determine the degree to which these systems become disrupted, the amount of kinetic energy amplification attained, and the non-linear saturation behaviors. Our most significant finding is that the details of initial force balance have a pronounced effect on the resulting flow morphology. Models in which the initial magnetic field is force-free deform, but do not become disrupted. Systems that achieve initial equilibrium by balancing pressure gradients and/or rotation against magnetic forces, however, tend to shred, mix, and develop turbulence. In all cases, the linear growth of current-driven instabilities is well-represented by analytic models. CDI-driven kinetic energy amplification is slower and saturates at a lower value in force-free models than in those that feature pressure gradients and/or rotation. In rotating columns, we find that magnetized regions undergoing rotational shear are driven toward equipartition between kinetic and magnetic energies. We show that these results are applicable for a large variety of physical parameters, but we caution that algorithmic decisions (such as choice of Riemann solver) can affect the evolution of these systems more than physically motivated parameters.
18 pages, 23 figures. Accepted to MNRAS and in press, with only minor revisions from original submitted version
References in corpus (16)
- PLUTO: a Numerical Code for Computational Astrophysics
- Athena: A New Code for Astrophysical MHD
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Gamma-ray flares from the Crab Nebula
- Discovery of Powerful Gamma-Ray Flares from the Crab Nebula
- An Unsplit Godunov Method for Ideal MHD via Constrained Transport in Three Dimensions
- A Second Order Godunov Method for Multidimensional Relativistic Magnetohydrodynamics
- 3D Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. I. Instability of a static column
- Modeling the Large Scale Structures of Astrophysical Jets in the Magnetically Dominated Limit
- Kink instabilities in jets from rotating magnetic fields
- Stability Properties of Magnetic Tower Jets
- Three-Dimensional Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. II. Relaxation of Pulsar Wind Nebula
- Three-Dimensional Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability with A Sub-Alfvenic Jet: Temporal Properties
- A New numerical scheme for resistive relativistic MHD using method of characteristics
- A Numerical Model of Hercules A by Magnetic Tower: Jet/Lobe Transition, Wiggling, and the Magnetic Field Distribution
- Magnetic field structure of relativistic jets without current sheets
Cited by in corpus (36)
- Relativistic MHD simulations of core-collapse GRB jets: 3D instabilities and magnetic dissipation
- Causality and stability of cosmic jets
- Three-Dimensional Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. III. Rotating Relativistic Jets
- Spatial growth of current-driven instability in relativistic rotating jets and the search for magnetic reconnection
- Physics of radiation mediated shocks and its applications to GRBs, supernovae, and neutron star mergers
- How frequent are close supermassive binary black holes in powerful jet sources?
- Spatial Growth of the Current-Driven Instability in Relativistic Jets
- Kink Instabilities In Relativistic Jets Can Drive Quasi-Periodic Radiation Signatures
- The dynamics of a highly magnetized jet propagating inside a star
- Origin of Weak Turbulence in the Outer Regions of Protoplanetary Disks
- Radio Galaxies at VHE energies
- Particle acceleration in kink-unstable jets
- The collimation of magnetic jets by disk winds
- Linear stability analysis of magnetized relativistic rotating jets
- Multi-scale dynamics of magnetic flux tubes and inverse magnetic energy transfer
- Three Dimensional Structure of Relativistic Jet Formation
- The effect of poloidal velocity shear on the local development of current-driven instabilities
- Gamma-ray Bursts Induced by Turbulent Reconnection
- Kinetic simulations of the lowest-order unstable mode of relativistic magnetostatic equilibria
- Relativistic MHD Simulations of Poynting Flux-Driven Jets
- Radiation Signatures From Striped Blazar Jet
- Fourth-order split monopole perturbation solutions to the Blandford-Znajek mechanism
- Internal instabilities in magnetized jets
- On the Linear Stability of Magnetized Jets Without Current Sheets: Non-Relativistic Case
- Quantifying energetics and dissipation in magnetohydrodynamic turbulence
- The effect of Compton drag on the dynamics of dissipative Poynting dominated flows: Implications for the unification of radio loud AGN
- Kink Instability of Force-Free Jets: a Parameter Space Study
- Pulsar Wind Nebulae Modeling
- High-energy neutrino emission from magnetised jets of rapidly rotating protomagnetars
- Linear and nonlinear evolution of current-carrying highly magnetized jets
- Blob formation and ejection from the radiative inefficient accretion flow around massive black hole
- A Markov Chain Monte Carlo approach for measurement of jet precession in radio-loud active galactic nuclei
- Instability of Non-uniform Toroidal Magnetic Fields in Accretion Disks
- Transverse Oscillations and Wave Propagation in the Magnetically Dominated M87 Jet
- Asymmetries of AGN jets in inhomogeneous media
- Future X-ray Polarimetry of Relativistic Accelerators: PWNe and SNRs