Physical Review Accelerators and Beams · 2018 · 20 citations · 10 references
High BrightnessPhotonicsElectrical EngineeringFree-electron LasersCavity Quality FactorEngineeringPhysicsRf SemiconductorAccelerator TechnologyCryogenicsApplied PhysicsSuperconductivityRf LossesX-ray Free-electron LaserMicrowave EngineeringElectron OpticCopper CavityFree Electron Laser
The development of high brightness electron sources can enable an increase in performance and reduction in size of extreme X-ray sources such as free electron lasers (FELs). A promising path to high brightness is through larger electric fields in radio-frequency (rf) photoinjectors. Recent experiments with 11.4 GHz copper accelerating cavities at cryogenic temperatures have demonstrated $500\text{ }\text{ }\mathrm{MV}/\mathrm{m}$ surface electric fields with low rf breakdown rates. However, when the surface electric fields are larger than $300\text{ }\text{ }\mathrm{MV}/\mathrm{m}$, the measured cavity quality factor, ${Q}_{0}$, decreases during the input rf pulse by up to 30%, recovering before the next rf pulse. In this paper, we present an experimental study of the rf losses, manifested as degradation of ${Q}_{0}$, in a copper cavity operated at cryogenic temperatures and high gradients. The experimental conditions range from temperatures of 10--77 K and rf pulse lengths of 100--800 ns, using surface electric fields up to $400\text{ }\text{ }\mathrm{MV}/\mathrm{m}$. We developed a model for the change in ${Q}_{0}$ using measured field emission currents and rf signals. We find that the ${Q}_{0}$ degradation is consistent with the rf power being absorbed by strong field emission currents accelerated inside the cavity.
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First lasing and operation of an ångstrom-wavelength free-electron laser
P. Emma, R. Akre, John Arthur et al. · Nature Photonics · 2010 · 3K citations
Multipactor discharge on metals and dielectrics: Historical review and recent theories
R. A. Kishek, Y. Y. Lau, L. K. Ang et al. · Physics of Plasmas · 1998 · 341 citations · Full text