Publication | Open Access
Experimental Characterization of Electron-Beam-Driven Wakefield Modes in a Dielectric-Woodpile Cartesian Symmetric Structure
31
Citations
28
References
2018
Year
Thz PhotonicsEngineeringElectron DiffractionWakefield ModesTerahertz PhotonicsElectron OpticBeam OpticComputational ElectromagneticsNanophotonicsCollective InstabilitiesFree Electron LaserPhotonicsTerahertz SpectroscopyPhysicsElectron-beam-driven Wakefield ModesWakefield SpectrumRelativistic Laser-matter InteractionApplied PhysicsHigh Gradient AcceleratorsExperimental Characterization
Photonic structures operating in the terahertz (THz) spectral region enable the essential characteristics of confinement, modal control, and electric field shielding for very high gradient accelerators based on wakefields in dielectrics. We report here an experimental investigation of THz wakefield modes in a three-dimensional photonic woodpile structure. Selective control in exciting or suppressing of wakefield modes with a nonzero transverse wave vector is demonstrated by using drive beams of varying transverse ellipticity. Additionally, we show that the wakefield spectrum is insensitive to the offset position of strongly elliptical beams. These results are consistent with analytic theory and three-dimensional simulations and illustrate a key advantage of wakefield systems with Cartesian symmetry: the suppression of transverse wakes by elliptical beams.
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