论文标题

使用种子自由电子激光器使用脉冲成型

Attosecond Pulse-shaping using a seeded free-electron laser

论文作者

Maroju, Praveen Kumar, Grazioli, Cesare, Di Fraia, Michele, Moioli, Matteo, Ertel, Dominik, Ahmadi, Hamed, Plekan, Oksana, Finetti, Paola, Allaria, Enrico, Giannessi, Luca, De Ninno, Giovanni, Spezzani, Carlo, Penco, Giuseppe, Demidovich, Alexander, Danailov, Miltcho, Borghes, Roberto, Kourousias, Georgios, Reis, Carlos Eduardo Sanches Dos, Billé, Fulvio, Lutman, Alberto A., Squibb, Richard J., Feifel, Raimund, Carpeggiani, Paolo, Reduzzi, Maurizio, Mazza, Tommaso, Meyer, Michael, Bengtsson, Samuel, Ibrakovic, Neven, Simpson, Emma Rose, Mauritsson, Johan, Csizmadia, Tamás, Dumergue, Mathieu, Kühn, Sergei, G., Harshitha N., You, Daehyun, Ueda, Kiyoshi, Labeye, Marie, Bækhøj, Jens Egebjerg, Schafer, Kenneth J., Gryzlova, Elena V., Grum-Grzhimailo, Alexei N., Prince, Kevin C., Callegari, Carlo, Sansone, Giuseppe

论文摘要

Attsond脉冲对于对其自然时间尺度上的价和核心电子动力学进行研究至关重要。目前,仅通过高阶谐波生成过程证明了Attosecond波形的可再现产生和表征。已经提出了几种用于整形波形的方法,包括金属过滤器,多层镜和对驾驶场的操纵。但是,这些方法都没有允许灵活地操纵Attosen波形的时间特征,并且它们患有高阶谐波生成过程的转化效率较低。相反,自由电子激光器提供飞秒,极端紫外线和X射线脉冲,其能量从数十美元的$ \mathrmμ$ J到几个MJ。最近的实验表明,它们可以产生sub-fs尖峰,但具有改变射击的时间特征。在这里,我们展示了使用种子的免费电子激光器的高能生成($ \MATHRMμ$ J级别)的首次演示。我们证明了对Attosexond脉冲列车的谐波组件的振幅和相操作,并结合了一种新颖的时间重建方法。此处介绍的结果为使用自由电子激光器执行ATTSENT ATTOSENT ATTOSEND实验开辟了道路。

Attosecond pulses are fundamental for the investigation of valence and core-electron dynamics on their natural timescale. At present the reproducible generation and characterisation of attosecond waveforms has been demonstrated only through the process of high-order harmonic generation. Several methods for the shaping of attosecond waveforms have been proposed, including metallic filters, multilayer mirrors and manipulation of the driving field. However, none of these approaches allow for the flexible manipulation of the temporal characteristics of the attosecond waveforms, and they suffer from the low conversion efficiency of the high-order harmonic generation process. Free Electron Lasers, on the contrary, deliver femtosecond, extreme ultraviolet and X-ray pulses with energies ranging from tens of $\mathrmμ$J to a few mJ. Recent experiments have shown that they can generate sub-fs spikes, but with temporal characteristics that change shot-to-shot. Here we show the first demonstration of reproducible generation of high energy ($\mathrmμ$J level) attosecond waveforms using a seeded Free Electron Laser. We demonstrate amplitude and phase manipulation of the harmonic components of an attosecond pulse train in combination with a novel approach for its temporal reconstruction. The results presented here open the way to perform attosecond time-resolved experiments with Free Electron Lasers.

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