Roseker W, Lee S, Walther M, Rysov R, Sprung M, Grübel G
Deutsches-Elektronen Synchrotron DESY, Notkestr. 85, 22607 Hamburg, Germany.
Frontier in Extreme Physics, Korea Research Institute of Standards and Science (KRISS), Daejeon 34113, South Korea.
Rev Sci Instrum. 2019 Apr;90(4):045106. doi: 10.1063/1.5089496.
We present a novel experimental setup for performing a precise pre-alignment of a hard X-ray split-and-delay unit based on low coherence light interferometry and high-precision penta-prisms. A split-and-delay unit is a sophisticated perfect crystal-optics device that splits an incoming X-ray pulse into two sub-pulses and generates a controlled time-delay between them. While the availability of a split-and-delay system will make ultrafast time-correlation and X-ray pump-probe experiments possible at free-electron lasers, its alignment process can be very tedious and time-consuming due to its complex construction. By implementing our experimental setup at beamline P10 of PETRA III, we were able to reduce the time of alignment to less than 3 h. We also propose an alternate method for finding the zero-time delay crossing without the use of X-rays or pulsed laser sources. The successful demonstration of this method brings prospect for operating the split-and-delay systems under alignment-time-critical environments such as X-ray free electron laser facilities.
我们展示了一种新颖的实验装置,用于基于低相干光干涉测量法和高精度五棱镜对硬X射线分离延迟单元进行精确预对准。分离延迟单元是一种复杂的完美晶体光学器件,它将入射的X射线脉冲分成两个子脉冲,并在它们之间产生可控的时间延迟。虽然分离延迟系统的可用性将使在自由电子激光器上进行超快时间关联和X射线泵浦-探测实验成为可能,但其对准过程由于其复杂的结构可能非常繁琐且耗时。通过在PETRA III的P10光束线上实施我们的实验装置,我们能够将对准时间缩短至不到3小时。我们还提出了一种无需使用X射线或脉冲激光源来寻找零时间延迟交叉点的替代方法。该方法的成功演示为在诸如X射线自由电子激光设施等对准时间关键环境下操作分离延迟系统带来了前景。