Publication | Open Access
Laser-Accelerated Protons with Energy-Dependent Beam Direction
117
Citations
13
References
2005
Year
Proton EnergyIntense Femtosecond LaserNuclear PhysicsPhysicsEngineeringNatural SciencesLaser-induced BreakdownRelativistic Laser-matter InteractionApplied PhysicsLaser-plasma InteractionOblique IrradiationSynchrotron RadiationLaser-accelerated ProtonsBeam Transport System
The spatial distribution of protons, accelerated by intense femtosecond laser pulses interacting with thin target foils under oblique irradiation are investigated. Under certain conditions, the proton beams are directed away from the target normal. This deviation is towards the laser forward direction, with an angle that increases with the level and duration of the amplified spontaneous emission pedestal before the main laser pulse. In addition, for a given laser pulse, this beam deviation increases with proton energy. The observations are discussed in terms of different electron acceleration mechanisms and target normal sheath acceleration, in combination with a laser-controllable shock wave locally deforming the target rear surface.
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