Kumar Sonu, Schirmel Nora, Erk Benjamin, Manschwetus Bastian, Alisaukas Skirmantas, Braune Markus, Cirmi Giovanni, Czwalinna Marie Kristin, Frühling Ulrike, Grosse-Wortmann Uwe, Kschuev Nick, Kuschewski Frederik, Lang Tino, Lindenblatt Hannes, Litvinyuk Igor, Meister Severin, Moshammer Robert, Papadopoulou Christina C, Passow Christopher, Roensch-Schulenburg Juliane, Trost Florian, Hartl Ingmar, Düsterer Stefan, Schulz Sebastian
Opt Express. 2024 Feb 12;32(4):6597-6608. doi: 10.1364/OE.513714.
High temporal resolution is essential for ultra-fast pump-probe experiments. Arrival time jitter and drift measurements, as well as their control, become critical especially when combining XUV or X-ray free-electron lasers (FELs) with optical lasers due to the large scale of such facilities and their distinct pulse generation processes. This paper presents the application of a laser pulse arrival time monitor that actively corrects the arrival time of an optical laser relative to the FEL's main optical clock. Combined with post-analysis single pulse jitter correction this new approach improves the temporal resolution for pump-probe experiments significantly. Benchmark measurements on photo-ionization of xenon atoms performed at FLASH beamline FL26, demonstrate a sub-50 fs FWHM overall temporal resolution.
高时间分辨率对于超快泵浦-探测实验至关重要。到达时间抖动和漂移测量及其控制变得至关重要,特别是当将极紫外或X射线自由电子激光(FEL)与光学激光结合使用时,因为此类设施规模庞大且其脉冲产生过程各不相同。本文介绍了一种激光脉冲到达时间监测器的应用,该监测器可主动校正光学激光相对于FEL主光学时钟的到达时间。结合事后分析单脉冲抖动校正,这种新方法显著提高了泵浦-探测实验的时间分辨率。在FLASH光束线FL26上对氙原子光电离进行的基准测量表明,总体时间分辨率的半高宽小于50飞秒。