Differential Phase Contrast Imaging in the Scanning Transmission X-ray Microscope

J. R. Palmer, G. Morrison
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引用次数: 8

Abstract

In the scanning transmission x-ray microscope (STXM) the specimen is scanned in a raster by an x-ray probe formed with a Fresnel zone plate. To achieve near diffraction limited resolution it is necessary to have a coherent source, even when forming an incoherent brightfield image by measuring the x-ray intensity transmitted by the object. This has so far been the only imaging mode used in the STXM and for hydrated biological specimens is well suited to soft x-ray wavelengths within the “water window” (2‧33 to 4‧36 nm) where carbon absorbs much more strongly than water. However, by the use of phase contrast rather than amplitude contrast, it is possible to form images at wavelengths where the absorption is low, resulting in lower radiation dose for the same level of contrast. Calculations made by Howells [1] and Rudolph and Schmahl [2] have demonstrated very clearly the advantages of phase contrast imaging at wavelengths outside the water window.
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扫描透射x射线显微镜差相衬成像
在扫描透射x射线显微镜(STXM)中,用菲涅耳带板形成的x射线探针在光栅中扫描样品。为了达到接近衍射极限的分辨率,必须有一个相干光源,即使通过测量物体透射的x射线强度形成非相干明场图像时也是如此。这是迄今为止唯一用于STXM和水合生物标本的成像模式,非常适合“水窗”(2·33至4·36纳米)内的软x射线波长,因为碳的吸收比水强得多。然而,通过使用相位对比而不是幅度对比,可以在吸收较低的波长处形成图像,从而在相同对比度水平下产生较低的辐射剂量。Howells[1]、Rudolph和Schmahl[1]的计算已经非常清楚地证明了在水窗外波长处相衬成像的优势。
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