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K-B bendable system optimization at FERMI@Elettra FEL: impact of different spatial wavelengths on the spot size

机译:Fermi @ Elettra Fel的K-B可弯曲系统优化:不同空间波长对斑点尺寸的影响

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Kirkpatrick-Baez (K-B) active X-ray optics system is a good choice for focusing the free electron laser (FEL) pulses delivered by FERMI, the first seeded EUV-SXR FEL user facility operated at Elettra Sincrotrone Trieste. The present work reports the results obtained tuning this optical system used at the Diffraction and Projection Imaging (DiProI) beamline in order to improve and optimize its performance in terms of quality and size of the focal spot onto the sample controlling the fluence as well. To characterize the performance and develop reliable and reproducible focusing procedures we performed a campaign of measurements with several diagnostic systems, including a wavefront sensor mounted after the DiProI chamber. Online wavefront measurements have allowed for optimizing the bending acting on the mirrors curvature and the angle positions (pitch and roll) of the K-B system. The experimental results are compared with the predictions from simulations obtained using the WISE code, starting from mirror actual surface metrology characterization. Filtering the Fourier transform of the mirror surface profiles we have analyzed the impact of spatial wavelengths on the focal spot degradation. From the wavefront measurements we have inferred a focal spot of 10 μm × 10 μm confirmed by the PMMA ablation imprints. The results from simulations with the WISE code are in agreement with the measurements and for different energies of the incident beam we established the threshold when the focal spot degradation is not affected by the spatial wavelengths of the K-B mirror surfaces.
机译:帕特里克-贝兹(K-B)活性透视光学系统是一个很好的选择用于聚焦自由电子激光器(FEL)脉冲费米递送,第一晶种EUV-SXR FEL用户设施在ELETTRA Sincrotrone的里雅斯特操作。目前的工作报告结果获得的调谐,以便在衍射和投影成像(DiProI)束线用于改善和优化其在质量和焦斑的尺寸方面的性能到样品上控制所述注量以及该光学系统。为了表征性能和开发可靠和可再现的聚焦程序,我们进行的测量与运动几个诊断系统,包括波前传感器安装在所述腔室DiProI后。在线波前测量已经允许用于优化弯曲作用于镜曲率和K-B系的角度位置(俯仰和滚转)。实验结果与来自使用WISE码而获得的模拟,从反射镜实际表面计量表征开始的预测进行比较。过滤所述傅立叶变换反射镜表面的型材我们已经分析的空间波长的上焦斑降解的影响。从波阵面测量,我们已经推断出由PMMA消融印记证实为10μm×10μm的焦斑。从与WISE代码的模拟结果与测量协议和入射光束的不同能量,我们建立的阈值时焦斑降解不受K个-B反射镜表面的空间波长。

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