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Grid-enhanced X-ray coded aperture microscopy with polycapillary optics

机译:带有多毛细管光学元件的网格增强型X射线编码孔径显微镜

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摘要

Polycapillary devices focus X-rays by means of multiple reflections of X-rays in arrays of bent glass capillaries. The size of the focal spot (typically 10–100 μm) limits the resolution of scanning, absorption and phase-contrast X-ray imaging using these devices. At the expense of a moderate resolution, polycapillary elements provide high intensity and are frequently used for X-ray micro-imaging with both synchrotrons and X-ray tubes. Recent studies have shown that the internal microstructure of such an optics can be used as a coded aperture that encodes high-resolution information about objects located inside the focal spot. However, further improvements to this variant of X-ray microscopy will require the challenging fabrication of tailored devices with a well-defined capillary microstructure. Here, we show that submicron coded aperture microscopy can be realized using a periodic grid that is placed at the output surface of a polycapillary optics. Grid-enhanced X-ray coded aperture microscopy with polycapillary optics does not rely on the specific microstructure of the optics but rather takes advantage only of its focusing properties. Hence, submicron X-ray imaging can be realized with standard polycapillary devices and existing set-ups for micro X-ray fluorescence spectroscopy.
机译:多毛细管装置通过弯曲玻璃毛细管阵列中X射线的多次反射来聚焦X射线。焦点的大小(通常为10-100μm)限制了使用这些设备进行扫描,吸收和相衬X射线成像的分辨率。多毛细管元件以中等分辨率为代价,提供高强度,并经常用于同步加速器和X射线管的X射线微成像。最近的研究表明,这种光学器件的内部微结构可用作编码孔径,该孔径对位于焦点内物体的高分辨率信息进行编码。但是,对这种X射线显微术的进一步改进将需要挑战性地制造具有明确定义的毛细管显微结构的定制设备。在这里,我们显示可以使用放置在多毛细管光学器件的输出表面的周期性栅格来实现亚微米编码的孔径显微镜。具有多毛细管光学器件的网格增强型X射线编码孔径显微镜不依赖于光学器件的特定微观结构,而是仅利用其聚焦特性。因此,可以使用标准的多毛细管设备和用于微X射线荧光光谱的现有装置来实现亚微米X射线成像。

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