首页> 外文期刊>Journal of surface investigation: x-ray, synchrotron and neutron techniques >Computer simulation of the zernike phase contrast in hard x-ray radiation using refractive lenses and zone plates
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Computer simulation of the zernike phase contrast in hard x-ray radiation using refractive lenses and zone plates

机译:使用折射透镜和波带片对硬X射线辐射中的泽尼克相衬的计算机模拟

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摘要

Computer simulation of an experiment on imaging transparent (phase) microobjects using the Zernike phase contrast method under hard X-ray radiation has been performed. The beam parameters typical for synchrotron radiation sources of the third generation were used in calculations. Both a refracting lens and a zone plate have been considered as a focusing element. The phase shifting quarter-wave plate is located at a spot of the point source image. The results of calculations have shown that the method can be successfully used for objects with the sizes greater than 0.1 μm along and 1 μm across the beam. It has been shown that the contrast is caused not only by increasing the intensity within the shadow of the objects, but also by decreasing the intensity in the area beyond the objects, which is necessary to retain the integral intensity.
机译:计算机模拟了在硬X射线辐射下使用Zernike相衬法对透明(相)微物体成像的实验。在计算中使用了第三代同步加速器辐射源的典型光束参数。折射透镜和波带片都被认为是聚焦元件。相移四分之一波片位于点源图像的一个点。计算结果表明,该方法可成功用于尺寸大于0.1μm且跨束大于1μm的物体。已经表明,对比度的产生不仅是由于增加了物体阴影内的强度,而且还因为降低了物体以外区域的强度,这是保持积分强度所必需的。

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