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EFFECTS OF SURFACE SCATTER ON THE OPTICAL PERFORMANCE OF X-RAY SYNCHROTRON BEAM-LINE MIRRORS

机译:表面散射对X射线同步电子束线镜的光学性能的影响

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摘要

The increased availability of advanced synchrotron radiation sources is resulting in a resurgence of activity in the field of x-ray and extreme ultraviolet imaging systems. However, scattering effects caused by residual optical fabrication errors frequently dominate geometrical design errors in the degradation of image quality at these very short wavelengths. Traditional optical design and analysis techniques (geometrical ray tracing) are therefore inadequate for predicting the performance of high-resolution synchrotron beam-line optics. A surface-scattering theory must be implemented to model the image degradation effects of residual surface irregularities over the entire range of relevant spatial frequencies. This includes small-angle scattering effects caused by mid-spatial-frequency surface errors that fall between the traditional figure and finish specifications. Performance predictions are presented parametrically to provide insight into the optical fabrication tolerances necessary to meet the requirements of a specific application. [References: 24]
机译:高级同步加速器辐射源可用性的提高导致X射线和极紫外成像系统领域的活动重新出现。然而,在这些非常短的波长下,由残留的光学制造误差引起的散射效应通常会主导几何设计误差,从而降低图像质量。因此,传统的光学设计和分析技术(几何光线跟踪)不足以预测高分辨率同步加速器光束线光学系统的性能。必须实施表面散射理论,以在相关空间频率的整个范围内对残留表面不规则性的图像退化效应进行建模。这包括由中空频率表面误差引起的小角度散射效应,这些误差介于传统图形和饰面规格之间。以参数形式提供性能预测,以深入了解满足特定应用要求所需的光学制造公差。 [参考:24]

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