Publication | Open Access
Collision-Driven Negative-Energy Waves and the Weibel Instability of a Relativistic Electron Beam in a Quasineutral Plasma
31
Citations
31
References
2008
Year
EngineeringPhysicsApplied PhysicsBasic Plasma PhysicApplied Plasma PhysicPlasma InstabilityMagnetohydrodynamicsPlasma PhysicsQuasineutral PlasmaCosmic RayCollisionless Background PlasmaComputational ElectromagneticsRelativistic PlasmaSynchrotron RadiationWeibel InstabilityCollision-driven Negative-energy WavesRelativistic Electron Beam
A new model describing the Weibel instability of a relativistic electron beam propagating through a resistive plasma is developed. For finite-temperature beams, a new class of negative-energy magnetosound waves is identified, whose growth due to collisional dissipation destabilizes the beam-plasma system even for high beam temperatures. We perform 2D and 3D particle-in-cell simulations and show that in 3D geometry the Weibel instability persists even for collisionless background plasma. The anomalous plasma resistivity in 3D is caused by the two-stream instability.
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