Publication | Closed Access
Strong Field Acceleration and Steering of Ultrafast Electron Pulses from a Sharp Metallic Nanotip
120
Citations
27
References
2012
Year
EngineeringLaser-plasma InteractionElectron OpticUltrafast MagnetismElectron SpectroscopyUltrafast LasersFree Electron LaserPhotonicsStrong Field AccelerationLaser-field Induced ModificationUltrashort Electron PulsesPhysicsNanotechnologyRelativistic Laser-matter InteractionX-ray Free-electron LaserSynchrotron RadiationTaper ApexSharp Metallic NanotipUltrafast ElectronNatural SciencesSpectroscopyApplied PhysicsUltrafast Optics
We report a strong, laser-field induced modification of the propagation direction of ultrashort electron pulses emitted from nanometer-sized gold tapers. Angle-resolved kinetic energy spectra of electrons emitted from such tips are recorded using ultrafast near-infrared light pulses of variable wavelength and intensity for excitation. For sufficiently long wavelengths, we observe a pronounced strong-field acceleration of electrons within the field gradient at the taper apex. We find a distinct narrowing of the emission cone angle of the fastest electrons. We ascribe this to the field-induced steering of subcycle electrons as opposed to the diverging emission of quiver electrons. Our findings are corroborated by simulations based on a modified Simpleman model incorporating the curved, vectorial field gradient in the vicinity of the tip. Our results indicate new pathways for designing highly directional nanometer-sized ultrafast electron sources.
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