首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Proposal of an operation mode of FELiChEM for generating high-power ultra-short infrared FEL pulses
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Proposal of an operation mode of FELiChEM for generating high-power ultra-short infrared FEL pulses

机译:用于产生高功率超短红外型脉冲的Felichem的操作模式提案

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FELiChEM is a new infrared free-electron laser (FEL) oscillator user facility in Hefei, and has achieved the first lasing at 15 μm in June, 2019. To improve the temporal resolution for fulfilling the user demands, in this context, we propose an operation mode of generating high-power ultra-short FEL pulses by shortening the electron bunch and enhancing the FEL gain with a small cavity length detuning. The existing magnetic chicane is used to compress the electron bunch and increase its peak current. Taking the 10 μm FEL as an example, start-to-end simulations demonstrate that the FEL power can be greatly enhanced while the pulse duration is as short as one hundred femtoseconds. An energy slit provides an additional option that can further shorten the bunch length and reduce the energy spread by cutting off the bunch head and tail. With the energy slit on, all the minor spikes inside the FEL pulse will be further suppressed and only the main spike will be preserved.
机译:Felichem是合肥的新红外自由电子激光器(FEL)振荡器用户设施,并于2019年6月达到了15μm的第一次激光。为了提高满足用户需求的时间分辨率,在此背景下,我们提出了一个通过缩短电子束并增强具有小腔长静脉的高功率超短型脉冲产生高功率超短型脉冲的操作模式。现有的磁性螯合物用于压缩电子束并增加其峰值电流。以10μmfel为例,启动到终端模拟表明,在脉冲持续时间短至一百个飞秒短的同时可以大大提高FEL功率。能量狭缝提供了一种额外的选择,可以进一步缩短束长,并通过切断束头和尾部来降低能量传播。通过能量狭缝,将进一步抑制FEL脉冲内的所有次要尖峰,并且只能保留主秒。

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