Detailed Analysis of Filamentary Structure in the Weibel Instability
arXiv:0901.4402 · doi:10.1088/0004-637X/695/2/1550
Abstract
We present results of a 2D3V kinetic Vlasov simulation of the Weibel instability. The kinetic Vlasov simulation allows us to investigate the velocity distribution of dilute plasmas, in which the effect of collisions between particles is negligible, and has the advantage that the accuracy of the calculated velocity distribution does not depend on the density of plasmas at each point in the physical space. We succeed in reproducing some features of the Weibel instability shown by other simulations, for example, the exponentially growing phase, the saturation of the magnetic field strength, the formation of filamentary structure, and the coalescence of the filaments. Especially, we concentrate on the behavior of the filaments after the saturation of the magnetic field strength and find that there is a kind of quasi-equilibrium states before the coalescence occurs. Furthermore, it is found that an analytical solution for stationary states of the 2D3V Vlasov-Maxwell system can reproduce some dominant features of the quasi-equilibrium, e.g, the configuration of the magnetic field and the velocity distribution at each point. The analytical expression could give a plausible model for the transition layer of a collisionless shock where a strong magnetic field generated by the Weibel instability provides an effective dissipation process instead of collisions between particles.
9 pages, 11figures, to appear in ApJ
References in corpus (9)
- Gamma-Ray Bursts
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- On the structure of relativistic collisionless shocks in electron-ion plasmas
- Long Term Evolution of Magnetic Turbulence in Relativistic Collisionless Shocks: Electron-Positron Plasmas
- Non-relativistic Collisionless Shocks in Unmagnetized Electron-Ion Plasmas
- Saturation mechanism of the Weibel instability in weakly magnetized plasmas
- Relativistic Collisionless Shocks in Unmagnetized Electron-Positron Plasmas
- A Novel Method to Construct Stationary Solutions of the Vlasov Maxwell system
- A novel method to construct stationary solutions of the Vlasov-Maxwell system : the relativistic case