Publication | Open Access
Plasmon-Enhanced Photocathode for High Brightness and High Repetition Rate X-Ray Sources
85
Citations
24
References
2013
Year
X-ray SpectroscopyEngineeringNanostructured Plasmonic SurfacesElectron OpticX-ray ImagingOptical PropertiesFree Electron LaserHigh BrightnessPhotonicsElectrical EngineeringFree-electron LasersPhysicsPlasmon-enhanced PhotocathodeMultiphoton PhotoemissionSynchrotron RadiationX-ray Free-electron LaserApplied PhysicsOptoelectronicsX-ray OpticQuantum Yield
In this Letter, we report on the efficient generation of electrons from metals using multiphoton photoemission by use of nanostructured plasmonic surfaces to trap, localize, and enhance optical fields. The plasmonic surface increases absorption over normal metals by more than an order of magnitude, and due to the localization of fields, this results in over 6 orders of magnitude increase in effective nonlinear quantum yield. We demonstrate that the achieved quantum yield is high enough for use in rf photoinjectors operating as electron sources for MHz repetition rate x-ray free electron lasers.
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