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Spherical-grating monochromator with a variable-line-spaced grating for synchrotron radiation

机译:球面光栅单色仪,带可变行距光栅,用于同步辐射

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摘要

An optical design for spherical-grating monochromators for application to synchrotron radiation is presented. High spectral and spatial performance is obtained with a spherical variable-line-spaced grating coupled to a spherical mirror with its tangential plane coincident with the grating's equatorial plane. The monochromator works without an entrance slit in an off-Rowland configuration with a fixed entrance arm and demagnification on the exit slit. The law for groove-space variation of the grating compensates for the main spectral aberrations; spectral focusing in an extended energy range is ensured by a slight change in the exit arm with translations of the order of a few tens of millimeters. The inclusion of a spherical mirror ensures focusing on a plane perpendicular to the plane of spectral dispersion. The ultimate resolution is limited by the slope errors of a single spherical surface. The layout is applied to the design of a high-resolution monochromator for the 1000-250-eV region.
机译:提出了一种用于同步加速器辐射的球形光栅单色仪的光学设计。通过将球面可变线距光栅耦合到球面镜,使其切向平面与光栅的赤道平面重合,可以获得高光谱和空间性能。单色仪的工作原理是:在非罗兰(Rowland)配置中没有入口狭缝,带有固定的入口臂,并且在出口狭缝上具有缩小率。光栅的凹槽空间变化定律补偿了主要的光谱像差。出口臂的微小变化和几十毫米的平移确保了在扩展的能量范围内的光谱聚焦。包含球面镜可确保聚焦在垂直于光谱色散平面的平面上。极限分辨率受单个球面的倾斜度误差的限制。该布局应用于1000-250eV区域的高分辨率单色仪的设计。

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