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Designs for an infrared free-electron laser based on gyrotron-powered electromagnetic wigglers

机译:基于回旋加速器电磁摆动器的红外自由电子激光器的设计

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The possibility of developing gyrotron-powered electromagnetic wiggler free-electron laser (FEL) oscillators is of considerable interest for reducing the electron energy required for operation in the infrared spectrum. This paper considers the design of a 10.6 /spl mu/m electromagnetic wiggler FEL experiment based on the University of California at Santa Barbara (UCSB) 6 MeV electrostatic accelerator. Both waveguide and quasioptical wiggler resonator configurations are considered. A prescription for optimizing the gain of a waveguide electromagnetic wiggler FEL is derived and the nonlinear regime is treated by relating the electromagnetic wiggler FEL equations-of-motion to the "universal" normalized FEL equations. Point designs are given showing accelerator, gyrotron, and output parameters for 10.6 /spl mu/m Proof-of-Principle FEE experiments based on both waveguide gyrotron and quasioptical gyrotron wigglers. Designs are given for both a 5- and a 2-A FEL electron beam.
机译:为了降低在红外光谱中工作所需的电子能量,开发回旋加速器供电的电磁摆动自由电子激光(FEL)振荡器的可能性引起了极大的兴趣。本文考虑了基于加州大学圣巴巴拉分校(UCSB)6 MeV静电加速器的10.6 / splμm/ m电磁摇摆器FEL实验的设计。波导和准光学摆动谐振器配置均被考虑。得出优化波导电磁摆动器FEL增益的处方,并通过将电磁摆动器FEL运动方程与“通用”归一化FEL方程相关联来处理非线性状态。给出了点设计,显示了基于波导回旋管和准光学回旋管摆动的10.6 / spl mu / m原理证明FEE实验的加速器,回旋管和输出参数。给出了5A和2A FEL电子束的设计。

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