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用于硬X射线全场显微镜的孔径优化折射透镜模拟

Simulation of aperture-optimised refractive lenses for hard X-ray full field microscopy.

作者信息

Marschall Felix, Last Arndt, Simon Markus, Vogt Harald, Mohr Jürgen

出版信息

Opt Express. 2016 May 16;24(10):10880-9. doi: 10.1364/OE.24.010880.

Abstract

The aperture of refractive X-ray lenses is limited by absorption and geometry. We introduce a specific simulation method to develop an aperture-optimized lens design for hard X-ray full field microscopy. The aperture-optimized lens, referred to as Taille-lens, allows for high spatial resolution as well as homogeneous image quality. This is achieved by the individual adaptation of the apertures of hundreds of lens elements of an X-ray imaging lens to the respective microscopy setup. For full field microscopy, the simulations result in lenses with both a large entrance and exit aperture and lens elements with smaller apertures in the middle of the lens.

摘要

折射式X射线透镜的孔径受吸收和几何形状的限制。我们引入一种特定的模拟方法,以开发用于硬X射线全场显微镜的孔径优化透镜设计。这种孔径优化透镜,即泰伊透镜,可实现高空间分辨率以及均匀的图像质量。这是通过将X射线成像透镜的数百个透镜元件的孔径分别适配到各自的显微镜设置来实现的。对于全场显微镜,模拟结果得到的透镜具有较大的入射和出射孔径,而透镜元件在透镜中部具有较小的孔径。

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