Gyrokinetic and kinetic particle-in-cell simulations of guide-field reconnection. I: Macroscopic effects of the electron flows
arXiv:1504.01351 · doi:10.1063/1.4928381
Abstract
In this work, we compare gyrokinetic (GK) and fully kinetic Particle-in-Cell (PIC) simulations of magnetic reconnection in the limit of strong guide field. In particular, we analyze the limits of applicability of the GK plasma model compared to a fully kinetic description of force free current sheets for finite guide fields (). Here we report the first part of an extended comparison, focusing on the macroscopic effects of the electron flows. For a low beta plasma (), it is shown that both plasma models develop magnetic reconnection with similar features in the secondary magnetic islands if a sufficiently high guide field () is imposed in the kinetic PIC simulations. Outside of these regions, in the separatrices close to the X points, the convergence between both plasma descriptions is less restrictive (). Kinetic PIC simulations using guide fields reveal secondary magnetic islands with a core magnetic field and less energetic flows inside of them in comparison to the GK or kinetic PIC runs with stronger guide fields. We find that these processes are mostly due to an initial shear flow absent in the GK initialization and negligible in the kinetic PIC high guide field regime, in addition to fast outflows on the order of the ion thermal speed that violate the GK ordering. Since secondary magnetic islands appear after the reconnection peak time, a kinetic PIC/GK comparison is more accurate in the linear phase of magnetic reconnection. For a high beta plasma () where reconnection rates and fluctuations levels are reduced, similar processes happen in the secondary magnetic islands in the fully kinetic description, but requiring much lower guide fields ().
18 pages, 13 figures. Revised to match with the published version in Physics of Plasmas
References in corpus (2)
Cited by in corpus (11)
- Transition from ion-coupled to electron-only reconnection: Basic physics and implications for plasma turbulence
- Fully kinetic versus reduced-kinetic modelling of collisionless plasma turbulence
- Viriato: a Fourier-Hermite spectral code for strongly magnetised fluid-kinetic plasma dynamics
- Exploring the acceleration mechanisms for particle injection and power-law formation during trans-relativistic magnetic reconnection
- Stable interpolation with isotropic and anisotropic Gaussians using Hermite generating function
- A massively parallel semi-Lagrangian solver for the six-dimensional Vlasov-Poisson equation
- Kinetic turbulence in fast 3D collisionless guide-field magnetic reconnection
- Two-stage electron acceleration by 3D collisionless guide field magnetic reconnection
- Sub-Grid-Scale Description of Turbulent Magnetic Reconnection in Magnetohydrodynamics
- A Parallel-Kinetic-Perpendicular-Moment Model for Magnetized Plasmas
- Characterizing Velocity-Space Signatures of Electron Energization in Large-Guide-Field Collisionless Magnetic Reconnection