Plasmoid instability in the semi-collisional regime
arXiv:1804.05145 · doi:10.1017/S002237781800106X
Abstract
We investigate analytically and numerically the semi-collisional regime of the plasmoid instability, defined by the inequality , where is the width of a Sweet-Parker current sheet, is the ion sound Larmor radius, and is width of boundary layer that arises in the plasmoid instability analysis. Theoretically, this regime is predicted to exist if the Lundquist number and the length of the current sheet are such that (for a sinusoidal-like magnetic configuration; for a Harris-type sheet the lower bound is replaced with ). These bounds are validated numerically by means of simulations using a reduced gyrokinetic model (Zocco & Schekochihin, , , 2011) conducted with the code . Importantly, this regime is conjectured to allow for plasmoid formation at relatively low, experimentally accessible, values of the Lundquist number. Our simulations obtain plasmoid instability at values of as low as . The simulations do not prescribe a Sweet-Parker sheet; rather, one is formed self-consistenly during the nonlinear evolution of the initial tearing mode configuration. This proves that this regime of the plasmoid instability is realizable, at least at the relatively low values of the Lundquist number that are accessible to current dedicated experiments.
21 pages, 8 figures, accepted in Journal of Plasma Physics (accepted version)
References in corpus (12)
- Instability of current sheets and formation of plasmoid chains
- Fast TeV variability in blazars: jets in a jet
- Self-Feeding Turbulent Magnetic Reconnection on Macroscopic Scales
- General Theory of the Plasmoid Instability
- Relativistic magnetic reconnection in pair plasmas and its astrophysical applications
- Blobs in recurring EUV jets
- Multiple Plasmoid Ejections and Associated Hard X-ray Bursts in the 2000 November 24 Flare
- Anomalous Heating and Plasmoid Formation in a Driven Magnetic Reconnection Experiment
- Kinetic microtearing modes and reconnecting modes in strongly magnetised slab plasmas
- An Experimental Platform for Pulsed-Power Driven Magnetic Reconnection
- Development of Tearing Instability in a Current Sheet Forming by Sheared Incompressible Flow
- Particle Acceleration and Plasma Dynamics during Magnetic Reconnection in the Magnetically-dominated Regime
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