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Bifurcation and Lorentz-Factor Scaling of Relativistic Magnetized Plasma Expansion
25
Citations
14
References
2004
Year
MagnetismEngineeringPhysicsPeak Lorentz FactorNatural SciencesPlasma SimulationApplied PhysicsParticle PhysicsApplied Plasma PhysicRelativistic PlasmaMagnetohydrodynamicsPlasma PhysicsMagnetized PlasmaCosmic RayLorentz-factor ScalingElectron-positron PlasmasMagnetic ConfinementPlasma Pulse
We report the long-term results of 2 1/2-dimensional particle-in-cell simulations of the relativistic expansion of strongly magnetized electron-positron plasmas. When the simulation is carried to >150 light-crossing time of the initial plasma, the plasma pulse exhibits a number of remarkable properties. These include the repeated bifurcation of the pulse profile, development of a power-law momentum distribution with low-energy cutoff, and a simple scaling law for the peak Lorentz factor.
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