Schneider Michael, Günther Christian Michael, von Korff Schmising Clemens, Pfau Bastian, Eisebitt Stefan
Opt Express. 2016 Jun 13;24(12):13091-100. doi: 10.1364/OE.24.013091.
A concept to obtain a measure of the photon flux accepted by a solid sample in single-shot transmission experiments with extreme ultraviolet (XUV) or soft x-ray radiation is demonstrated. Shallow, continuously distorted gratings are used to diffract a constant fraction of the incident photons onto an extended area of a CCD detector. The signal can be tailored to fit the dynamic range of the detector, i.e. matching the scattered intensity of the studied structure of interest. Furthermore, composite grating designs that also allow for the measurement of the spatial photon distribution on the sample are demonstrated. The gratings are directly fabricated by focused ion-beam (FIB) lithography into a SiN membrane that supports the actual sample layer. This allows for rapid fabrication of hundreds of samples, making the concept suitable for systematic studies in destructive single-shot measurements at free-electron laser (FEL) sources. We demonstrate relative photon flux measurements in magnetic scattering experiments with synchrotron and FEL radiation at 59.6 eV photon energy.
展示了一种在极紫外(XUV)或软X射线辐射的单次传输实验中获取固体样品所接受光子通量测量值的概念。使用浅的、连续变形的光栅将恒定比例的入射光子衍射到电荷耦合器件(CCD)探测器的扩展区域上。该信号可以进行调整以适应探测器的动态范围,即匹配所研究感兴趣结构的散射强度。此外,还展示了复合光栅设计,其还允许测量样品上的空间光子分布。这些光栅通过聚焦离子束(FIB)光刻直接制造在支撑实际样品层的氮化硅膜中。这使得能够快速制造数百个样品,从而使该概念适用于在自由电子激光(FEL)源进行的破坏性单次测量中的系统研究。我们展示了在59.6 eV光子能量下使用同步加速器和FEL辐射进行的磁散射实验中的相对光子通量测量。