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Aberration-free aspherical lens shape for shortening the focal distance of an already convergent beam

机译:无像差的非球面透镜形状可缩短已会聚光束的焦距

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摘要

The shapes of single lens surfaces capable of focusing divergent and collimated beams without aberration have already been calculated. However, nanofocusing compound refractive lenses (CRLs) require many consecutive lens surfaces. Here a theoretical example of an X-ray nanofocusing CRL with 48 consecutive surfaces is studied. The surfaces on the downstream end of this CRL accept X-rays that are already converging toward a focus, and refract them toward a new focal point that is closer to the surface. This case, so far missing from the literature, is treated here. The ideal surface for aberration-free focusing of a convergent incident beam is found by analytical computation and by ray tracing to be one sheet of a Cartesian oval. An ‘X-ray approximation’ of the Cartesian oval is worked out for the case of small change in index of refraction across the lens surface. The paraxial approximation of this surface is described. These results will assist the development of large-aperture CRLs for nanofocusing.
机译:已经计算出能够聚焦发散光束和准直光束而没有像差的单透镜表面的形状。但是,纳米聚焦复合折射透镜(CRL)需要许多连续的透镜表面。在这里,研究了具有48个连续表面的X射线纳米聚焦CRL的理论示例。此CRL下游端的表面接受已经向焦点会聚的X射线,并将它们向更靠近该表面的新焦点折射。这种情况至今为止还没有文献报道,在此进行处理。通过分析计算和通过射线追踪,可以找到会聚的入射光束无像差聚焦的理想表面是一张笛卡尔椭圆形。对于整个镜片表面的折射率变化很小的情况,对笛卡尔椭圆形进行了“ X射线近似”处理。描述了该表面的近轴近似。这些结果将有助于开发用于纳米聚焦的大孔径CRL。

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