Reinhard Marco, Skoien Dean, Spies Jacob A, Garcia-Esparza Angel T, Matson Benjamin D, Corbett Jeff, Tian Kai, Safranek James, Granados Eduardo, Strader Matthew, Gaffney Kelly J, Alonso-Mori Roberto, Kroll Thomas, Sokaras Dimosthenis
SLAC National Accelerator Laboratory, Menlo Park, California 94025, USA.
Struct Dyn. 2023 Oct 27;10(5):054304. doi: 10.1063/4.0000207. eCollection 2023 Sep.
We present a dedicated end-station for solution phase high repetition rate (MHz) picosecond hard x-ray spectroscopy at beamline 15-2 of the Stanford Synchrotron Radiation Lightsource. A high-power ultrafast ytterbium-doped fiber laser is used to photoexcite the samples at a repetition rate of 640 kHz, while the data acquisition operates at the 1.28 MHz repetition rate of the storage ring recording data in an alternating on-off mode. The time-resolved x-ray measurements are enabled via gating the x-ray detectors with the 20 mA/70 ps camshaft bunch of SPEAR3, a mode available during the routine operations of the Stanford Synchrotron Radiation Lightsource. As a benchmark study, aiming to demonstrate the advantageous capabilities of this end-station, we have conducted picosecond Fe K-edge x-ray absorption spectroscopy on aqueous [Fe(phen)], a prototypical spin crossover complex that undergoes light-induced excited spin state trapping forming an electronic excited state with a 0.6-0.7 ns lifetime. In addition, we report transient Fe Kβ main line and valence-to-core x-ray emission spectra, showing a unique detection sensitivity and an excellent agreement with model spectra and density functional theory calculations, respectively. Notably, the achieved signal-to-noise ratio, the overall performance, and the routine availability of the developed end-station have enabled a systematic time-resolved science program using the monochromatic beam at the Stanford Synchrotron Radiation Lightsource.
我们展示了一个专门的终端站,用于在斯坦福同步辐射光源的15-2光束线上进行溶液相高重复率(兆赫兹)皮秒硬X射线光谱研究。一台高功率超快掺镱光纤激光器用于以640 kHz的重复率对样品进行光激发,而数据采集则以存储环1.28 MHz的重复率运行,以交替开-关模式记录数据。通过用SPEAR3的20 mA/70 ps凸轮轴束对X射线探测器进行门控来实现时间分辨X射线测量,这是斯坦福同步辐射光源常规运行期间可用的一种模式。作为一项基准研究,旨在展示该终端站的优势能力,我们对水性[Fe(phen)]进行了皮秒级Fe K边X射线吸收光谱研究,[Fe(phen)]是一种典型的自旋交叉配合物,它经历光诱导激发自旋态捕获,形成寿命为0.6 - 0.7 ns的电子激发态。此外,我们报告了瞬态Fe Kβ主线和价到芯X射线发射光谱,分别显示出独特的检测灵敏度以及与模型光谱和密度泛函理论计算的极佳一致性。值得注意的是,所实现的信噪比、整体性能以及所开发终端站的常规可用性,使得能够在斯坦福同步辐射光源使用单色光束开展系统的时间分辨科学计划。