Publication | Closed Access
Properties of the ultrashort gain length, self-amplified spontaneous emission free-electron laser in the linear regime and saturation
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Citations
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References
2003
Year
EngineeringLaser ScienceLaser-plasma InteractionLinear RegimeOptical PropertiesFree-electron LaserInfrared Sase AmplifierAccelerator TechnologyFree Electron LaserPhotonicsFree-electron LasersElectrical EngineeringSase RadiationPhysicsX-ray Free-electron LaserSynchrotron RadiationApplied PhysicsUltrashort Gain LengthOptoelectronics
VISA (Visible to Infrared SASE Amplifier) is a high-gain self-amplified spontaneous emission (SASE) free-electron laser (FEL), which achieved saturation at 840 nm within a single-pass 4-m undulator. The experiment was performed at the Accelerator Test Facility at BNL, using a high brightness 70-MeV electron beam. A gain length shorter than 18 cm has been obtained, yielding a total gain of 2 x 10(8) at saturation. The FEL performance, including the spectral, angular, and statistical properties of SASE radiation, has been characterized for different electron beam conditions. Results are compared to the three-dimensional SASE FEL theory and start-to-end numerical simulations of the entire injector, transport, and FEL systems. An agreement between simulations and experimental results has been obtained at an unprecedented level of detail.
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