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Influence of a step-tapered undulator field on the optical pulse shape of a far-infrared free-electron laser

机译:阶跃波状起伏场对远红外自由电子激光器光脉冲形状的影响

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摘要

The optical output of the free-electron laser for infrared experiments (FELIX), which operates in the regime of strong slippage, consists of picosecond pulses. Depending on the amount of cavity desynchronization, the optical pulse can develop substantial structure in the form of multiple subpulses. We present second-order autocorrelation measurements of the subpulses at several far-infrared wavelengths while applying a step-taper in the undulator field. The operation with a step-tapered undulator prevents the electrons from reabsorbing the optical field energy, leading to a smooth optical pulse. For different settings of the undulator the measured pulse shape and corresponding power spectrum are discussed. It is possible without decreasing the small-signal gain to produce a smooth high-power optical pulse during the whole saturated part of the machine pulse in an FEL oscillator with a reverse-step tapered undulator.
机译:用于红外实验的自由电子激光器(FELIX)的光输出在很强的滑移范围内运行,由皮秒脉冲组成。取决于腔失步的量,光脉冲可以形成多个子脉冲形式的实质结构。我们介绍了在几个远红外波长处的子脉冲的二阶自相关测量,同时在起伏器场中应用了步进锥。阶梯形波状起伏器的操作可防止电子重新吸收光场能量,从而产生平滑的光脉冲。对于波动器的不同设置,讨论了测得的脉冲形状和相应的功率谱。在带有反向步进锥形波荡器的FEL振荡器中,有可能在不减小小信号增益的情况下在机器脉冲的整个饱和部分产生平滑的高功率光脉冲。

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