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首页> 外文期刊>Japanese journal of applied physics >Lasing At 12 μm Mid-infrared Free-electron Laser In Kyoto University
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Lasing At 12 μm Mid-infrared Free-electron Laser In Kyoto University

机译:在京都大学发射12μm中红外自由电子激光

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摘要

Laser amplification using a 12 urn mid-infrared free-electron laser (MIR-FEL) was observed at the Institute of Advanced Energy (IAE), Kyoto University. A 25 MeV electron beam of 17 A peak current was used for the lasing experiment. A beam loading compensation method with an RF amplitude control in the thermionic RF gun was used to extend the macropulse duration against the backbombardment effect in the thermionic RF gun. As a result, an electron beam with a 4 μs duration was generated. A laser output with an intensity 50 times as high as the spontaneous emission intensity was observed. FEL gain was estimated to be 16% from the exponential growth of the laser output signal, and a cavity loss of 2.8% was estimated from the decay of the laser output signal. Three-dimensional (3D) FEL simulation was also performed to achieve the gain saturation in our FEL device.
机译:在京都大学高级能源研究所(IAE)观察到使用12微米的中红外自由电子激光器(MIR-FEL)进行的激光放大。激光实验使用峰值电流为17 A的25 MeV电子束。在热电子RF枪中采用具有RF振幅控制的束负载补偿方法来延长大脉冲持续时间,以抵抗热电子RF枪中的反撞效果。结果,产生了持续时间为4μs的电子束。观察到强度是自发发射强度的50倍的激光输出。根据激光输出信号的指数增长,FEL增益估计为16%,根据激光输出信号的衰减估计腔损耗为2.8%。还进行了三维(3D)FEL仿真,以在我们的FEL设备中实现增益饱和。

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