Publication | Closed Access
Spatial Uniformity of Laser-Accelerated Ultrahigh-Current MeV Electron Propagation in Metals and Insulators
171
Citations
22
References
2003
Year
Ma ElectronElectrical EngineeringEngineeringRadiation GenerationPhysicsMev ProtonsRelativistic Laser-matter InteractionApplied PhysicsCondensed Matter PhysicsLaser-plasma InteractionIon BeamSpatial UniformitySynchrotron RadiationMicroelectronicsLaser-generated MevElectron OpticElectrical Insulation
The evolution of laser-generated MeV, MA electron beams propagating through conductors and insulators has been studied by comparing measurement and modeling of the distribution of MeV protons that are sheath accelerated by the propagated electrons. We find that electron flow through metals is uniform and can be laser imprinted, whereas propagation through insulators induces spatial disruption of the fast electrons. Agreement is found with material dependent modeling.
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