Litcius/Paper detail

Enhanced Magnetic Field Amplification by Ion-beam Weibel Instability in Weakly Magnetized Astrophysical Shocks

Taiki Jikei, Takanobu Amano, Yosuke Matsumoto

2024The Astrophysical Journal10 citationsDOIOpen Access PDF

Abstract

Abstract We examine the evolution of ion-beam Weibel instability at strong collisionless shocks in weakly magnetized media. We find that a finite background magnetic field substantially affects both the linear and nonlinear phases of the instability, depending on whether the background electrons behave magnetized or not. Particle-in-cell simulations for magnetized electrons identify a dynamo-like mechanism of magnetic field amplification, which eventually leads to spontaneous magnetic reconnection. We conclude that this scenario is applicable to typical young supernova remnant shocks.

Topics & Concepts

PhysicsInstabilityMagnetic fieldWeibel instabilityPlasmaAstrophysicsBeam (structure)IonField (mathematics)AstronomyAtomic physicsNuclear physicsOpticsMechanicsQuantum mechanicsMathematicsPure mathematicsIonosphere and magnetosphere dynamicsAstrophysics and Cosmic PhenomenaSolar and Space Plasma Dynamics