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Variable Magnification With Kirkpatrick-Baez Optics for Synchrotron X-Ray Microscopy

机译:用于同步加速器X射线显微镜的Kirkpatrick-Baez光学元件的可变放大倍率

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摘要

We describe the distinction between the operation of a short focal length x-ray microscope forming a real image with a laboratory source (convergent illumination) and with a highly collimated intense beam from a synchrotron light source (Köhler illumination). We demonstrate the distinction with a Kirkpatrick-Baez microscope consisting of short focal length multilayer mirrors operating at an energy of 8 keV. In addition to realizing improvements in the resolution of the optics, the synchrotron radiation microscope is not limited to the usual single magnification at a fixed image plane. Higher magnification images are produced by projection in the limit of geometrical optics with a collimated beam. However, in distinction to the common method of placing the sample behind the optical source of a diverging beam, we describe the situation in which the sample is located in the collimated beam before the optical element. The ultimate limits of this magnification result from diffraction by the specimen and are determined by the sample position relative to the focal point of the optic. We present criteria by which the diffraction is minimized.
机译:我们描述了在使用实验室光源(会聚照明)和来自同步加速器光源的高度准直的强光束(科勒照明)形成真实图像的短焦距X射线显微镜的操作之间的区别。我们用Kirkpatrick-Baez显微镜证明了这种区别,该显微镜由工作在8 keV能量下的短焦距多层反射镜组成。除了实现光学分辨率的改善外,同步辐射显微镜还不限于在固定像面上的常规单倍放大。通过在准直光束的几何光学极限范围内进行投影可以产生更高的放大倍率图像。但是,与将样本放置在发散光束的光源后面的常用方法不同,我们描述了样本位于光学元件之前的准直光束中的情况。放大倍数的极限由样品的衍射引起,并由样品相对于光学系统焦点的位置决定。我们提出了使衍射最小化的标准。

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