论文标题
种子自由电子激光器中相干能量调制的自我放大
Self-Amplification of Coherent Energy Modulation in Seeded Free-Electron Lasers
论文作者
论文摘要
用于时间分解物质的精细分析的光谱技术需要连贯的X射线辐射,并持续时间且平均亮度高。种子自由电子激光器(Fels)使用外部种子激光器的频率上转换来提高时间连贯性,非常适合提供完全相干的软X射线脉冲。但是,由于当前最新的激光系统的局限性,很难以高度重复速率操作种子长石。在这里,我们报告了一种新型的自调制方法,用于增强激光诱导的能量调节,从而大大降低了外部激光系统的需求。在该方案的驱动下,我们在实验上使用了前所未有的小能量调制实验,在种子FEL中实现了高谐波产生。具有激光诱导的能量调制的电子束,其切片能量扩散的1.8倍,用于在单阶段的高增强谐波生成(HGHG)设置(HGHG)设置中的266 nm种子激光器的第7次谐波,在两个阶段HGHG设置中的30次谐波设置和种子激光器的第30个谐波。结果标志着迈向高重复速率,完全相干X射线FEL的重大步骤。
The spectroscopic techniques for time-resolved fine analysis of matter require coherent X-ray radiation with femtosecond duration and high average brightness. Seeded free-electron lasers (FELs), which use the frequency up-conversion of an external seed laser to improve temporal coherence, are ideal for providing fully coherent soft X-ray pulses. However, it is difficult to operate seeded FELs at a high repetition rate due to the limitations of present state-of-the-art laser systems. Here, we report the novel self-modulation method for enhancing laser-induced energy modulation, thereby significantly reducing the requirement of an external laser system. Driven by this scheme, we experimentally realize high harmonic generation in a seeded FEL using an unprecedentedly small energy modulation. An electron beam with a laser-induced energy modulation as small as 1.8 times the slice energy spread is used for lasing at the 7th harmonic of a 266-nm seed laser in a single-stage high-gain harmonic generation (HGHG) setup and the 30th harmonic of the seed laser in a two-stage HGHG setup. The results mark a major step towards a high-repetition-rate, fully coherent X-ray FEL.