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Simulations of high-power free electron lasers with strongly focused electron and optical beams

机译:具有强聚焦电子和光束的高功率自由电子激光器的仿真

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A high-power free electron laser (FEL) is being designed in collaboration with Jefferson Laboratory, University of Maryland and Advanced Energy Systems, using short Rayleigh-length resonators to increase the spot size at the mirrors and hence avoid mirror damage. A short Rayleigh length implies a very small optical mode waist in the center of the cavity. It may be desirable to strongly focus the electron beam as well, to improve overlap with the intense optical fields in the interaction region. Three-dimensional simulations are used to study the effects of varying the electron beam radius and angular spread to enhance FEL gain and efficiency. The effects of off-axis shifting and tilting of the electron beam are also studied.
机译:正在与马里兰大学的杰斐逊实验室和先进能源系统公司合作设计一种大功率自由电子激光器(FEL),它使用短瑞利长度谐振器来增加反射镜的光斑尺寸,从而避免反射镜损坏。较短的瑞利长度意味着腔中心的光学模式腰非常小。可能还需要强烈聚焦电子束,以改善与相互作用区域中的强光场的重叠。三维模拟用于研究改变电子束半径和角度扩展以增强FEL增益和效率的影响。还研究了电子束的偏轴移动和倾斜的影响。

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