论文标题

部分可观测时空混沌系统的无模型预测

An efficient low-density grating setup for monochromatization of XUV ultrafast light sources

论文作者

Guo, Qinda, Dendzik, Maciej, Berntsen, Magnus H., Grubišić-Čabo, Antonija, Li, Cong, Chen, Wanyu, Wang, Yang, Tjernberg, Oscar

论文摘要

超快光源已成为访问和理解材料科学中短暂现象的必不可少的工具。但是,具有高传输效率和脉搏持续时间保护的一种简单易于实现的方法仍然是一个挑战。在这里,我们展示并比较了两种方法,用于从高谐波生成源中选择所需的谐波,同时实现上述目标。第一种方法是将极端紫外球形镜与变速箱过滤器的结合,第二种方法使用了正常的球形光栅。两种溶液都靶向时间和角度分辨的光发射光谱在10-20 eV范围内具有光子能量,但也与其他实验技术相关。谐波选择的两种方法的特征在于集中质量,效率和时间扩展方面。已经证明,与镜+滤波器方法相比,聚焦光栅能够提供更高的传输(10.8 eV的3.3倍,为18.1 eV高12.9倍),仅暂时扩展(增加6.8%),斑点尺寸更大(增加了30%)。总体而言,我们的研究对单个光栅正常发射率单色器设计与使用过滤器之间的权衡建立了一个实验观点。因此,它为在需要从高谐波生成中易于实现的谐波选择中选择最合适的方法提供了一个基础。

Ultrafast light sources have become an indispensable tool to access and understand transient phenomenon in material science. However, a simple and easy-to-implement method for harmonic selection, with high transmission efficiency and pulse duration conservation, is still a challenge. Here we showcase and compare two approaches for selecting the desired harmonic from a high harmonic generation source while achieving the above goals. The first approach is the combination of extreme ultraviolet spherical mirrors with transmission filters and the second approach uses a normal-incidence spherical grating. Both solutions target time- and angle-resolved photoemission spectroscopy with photon energies in the 10-20 eV range but are relevant for other experimental techniques as well. The two approaches for harmonic selection are characterized in terms of focusing quality, efficiency, and temporal broadening. It is demonstrated that a focusing grating is able to provide much higher transmission as compared to the mirror+filter approach (3.3 times higher for 10.8 eV and 12.9 times higher for 18.1 eV), with only a slight temporal broadening (6.8% increase) and a somewhat larger spot size (~30% increase). Overall, our study establishes an experimental perspective on the trade-off between a single grating normal incidence monochromator design and the use of filters. As such, it provides a basis for selecting the most appropriate approach in various fields where an easy-to-implement harmonic selection from high harmonic generation is needed.

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