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Grazing angle Mach-Zehnder interferometer using reflective phase gratings and a polychromatic un-collimated light source

机译:使用反射相位光栅和多色非准直光源的掠角马赫曾德尔干涉仪

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摘要

Normal incidence Talbot-Lau interferometers in x-ray applications have the drawbacks of low fringe visibility with polychromatic sources when the wave propagation distance is increased to achieve higher phase sensitivity, and when fabrication limits the attainable grating density. In contrast, reflective gratings illuminated at grazing angles have dramatically higher effective densities than their physical values. However, new designs are needed for far field interferometers using grazing angle geometry with incoherent light sources. We show that, with the appropriate design and choice of reflective phase gratings, there exist pairs of interfering pathways of exactly equal lengths independent of the incoming beam’s incidence angle and wavelength. With a visible light grazing angle Mach-Zehnder interferometer, we show the conditions for achieving near ideal fringe visibility and demonstrate both absolute and differential phase-contrast imaging. We also describe the design parameters of an x-ray interferometer and key factors for its implementation.
机译:X射线应用中的法向入射Talbot-Lau干涉仪具有以下缺点:当增加波传播距离以实现更高的相位灵敏度时,以及在制造过程中限制了可达到的光栅密度时,多色光源的条纹可见度较低。相反,以掠射角照射的反射光栅具有比其物理值高得多的有效密度。但是,使用掠射角几何结构且光源不相干的远场干涉仪需要新的设计。我们证明,通过适当设计和选择反射相位光栅,可以存在长度完全相等的成对干扰路径,而与入射光束的入射角和波长无关。利用可见光掠角Mach-Zehnder干涉仪,我们展示了实现接近理想条纹可见性的条件,并演示了绝对和差分相衬成像。我们还描述了X射线干涉仪的设计参数及其实现的关键因素。

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