首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >The voltage optimization of a four-element lens used on a hemispherical spectrograph with virtual entry for highest energy resolution
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The voltage optimization of a four-element lens used on a hemispherical spectrograph with virtual entry for highest energy resolution

机译:半球形光谱仪上使用的四元素透镜的电压优化,带有虚拟入口以实现最高能量分辨率

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摘要

The methodology and results of a detailed four-element lens optimization analysis based on electron trajectory numerical simulations are presented for a hemispherical deflector analyzer (HDA), whose entry aperture size is determined by the injection lens itself and is therefore virtual. Trajectory calculations were performed using both the boundary-element method (BEM) and the finite-difference method (FDM) and results from these two different approaches were benchmarked against each other, to probe and confirm the accuracy of our results. Since the first and last electrode are held at fixed potentials, the two intermediate adjustable lens electrode voltages were varied over the entire available voltage space in a direct, systematic, brute-force approach, while minima in beam spot size on the 2-D position sensitive detector (PSD) at the exit of the HDA were investigated using a beam shaping approach. Lens voltages demonstrating improved energy resolution for the combined lens/HDA/PSD spectrograph system were sought with and without pre-retardation. The optimal voltages were then tested experimentally on the modeled HDA system using a hot-wire electron gun. The measured energy resolution was found to be in good overall agreement with our simulations., particularly at the highest resolution (-0.05%) working conditions. These simulations also provide a detailed insight to the distinctive trajectory optics-and positions of the first and second image planes, when the PSD has to be placed some distance away from the HDA exit plane, and is therefore not at theideal optics conjugate image position. The substantial time savings afforded over usual trial-and-error experimentation should make this type of make-do simulation approach attractive to experimentalists. (C) 2016 Elsevier B.V. All rights reserved.
机译:针对半球形偏转分析仪(HDA),提出了基于电子轨迹数值模拟的详细的四元素镜片优化分析的方法和结果,该镜片的入射孔尺寸由注射镜片本身确定,因此是虚拟的。使用边界元法(BEM)和有限差分法(FDM)进行了轨迹计算,并且将这两种不同方法的结果进行了基准比较,以探查并确认我们的结果的准确性。由于第一个和最后一个电极保持在固定电势,两个中间可调透镜电极电压在整个可用电压空间内以直接,系统,强力的方式变化,而二维位置上的束斑尺寸最小使用光束整形方法研究了HDA出口处的灵敏探测器(PSD)。寻找具有和不具有预延迟的透镜电压,以证明组合的透镜/ HDA / PSD光谱仪系统具有改进的能量分辨率。然后使用热线电子枪在模拟的HDA系统上对最佳电压进行实验测试。发现测得的能量分辨率与我们的模拟总体吻合良好,特别是在最高分辨率(-0.05%)的工作条件下。当必须将PSD放置在距HDA出射平面一定距离的位置,并且因此不在理想的光学共轭图像位置时,这些模拟还提供了对独特的轨迹光学系统以及第一和第二图像平面位置的详细了解。与通常的反复试验相比,所节省的大量时间应使这种制作模拟方法对实验人员具有吸引力。 (C)2016 Elsevier B.V.保留所有权利。

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