Appi E, Papadopoulou C C, Mapa J L, Jusko C, Mosel P, Schoenberg A, Stock J, Feigl T, Ališauskas S, Lang T, Heyl C M, Manschwetus B, Brachmanski M, Braune M, Lindenblatt H, Trost F, Meister S, Schoch P, Trabattoni A, Calegari F, Treusch R, Moshammer R, Hartl I, Morgner U, Kovacev M
Institut für Quantenoptik, Leibniz Universität Hannover, Hannover 30167, Germany.
DESY, Hamburg 22607, Germany.
Rev Sci Instrum. 2021 Dec 1;92(12):123004. doi: 10.1063/5.0063225.
We present the design, integration, and operation of the novel vacuum ultraviolet (VUV) beamline installed at the free-electron laser (FEL) FLASH. The VUV source is based on high-order harmonic generation (HHG) in gas and is driven by an optical laser system synchronized with the timing structure of the FEL. Ultrashort pulses in the spectral range from 10 to 40 eV are coupled with the FEL in the beamline FL26, which features a reaction microscope (REMI) permanent endstation for time-resolved studies of ultrafast dynamics in atomic and molecular targets. The connection of the high-pressure gas HHG source to the ultra-high vacuum FEL beamline requires a compact and reliable system, able to encounter the challenging vacuum requirements and coupling conditions. First commissioning results show the successful operation of the beamline, reaching a VUV focused beam size of about 20 µm at the REMI endstation. Proof-of-principle photo-electron momentum measurements in argon indicate the source capabilities for future two-color pump-probe experiments.
我们介绍了安装在自由电子激光(FEL)FLASH上的新型真空紫外(VUV)光束线的设计、集成和运行情况。该VUV光源基于气体中的高次谐波产生(HHG),并由与FEL定时结构同步的光学激光系统驱动。光谱范围为10至40 eV的超短脉冲在光束线FL26中与FEL耦合,该光束线具有一个反应显微镜(REMI)永久终端站,用于对原子和分子靶中的超快动力学进行时间分辨研究。将高压气体HHG源连接到超高真空FEL光束线需要一个紧凑且可靠的系统,该系统能够满足具有挑战性的真空要求和耦合条件。首次调试结果表明光束线运行成功,在REMI终端站达到了约20 µm的VUV聚焦光束尺寸。在氩气中进行的原理验证光电子动量测量表明了该光源用于未来双色泵浦 - 探测实验的能力。