Publication | Closed Access
Lateral Electron Transport in High-Intensity Laser-Irradiated Foils Diagnosed by Ion Emission
90
Citations
23
References
2007
Year
Electrical EngineeringEngineeringRadiation GenerationPhysicsApplied PhysicsLaser-plasma InteractionElectron TransportElectric FieldSynchrotron RadiationIon EmissionLateral Electron TransportHigh-intensity Laser-irradiated Foils
An experimental investigation of lateral electron transport in thin metallic foil targets irradiated by ultraintense (>or=10(19) W/cm2) laser pulses is reported. Two-dimensional spatially resolved ion emission measurements are used to quantify electric-field generation resulting from electron transport. The measurement of large electric fields ( approximately 0.1 TV/m) millimeters from the laser focus reveals that lateral energy transport continues long after the laser pulse has decayed. Numerical simulations confirm a very strong enhancement of electron density and electric field at the edges of the target.
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