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Lensless imaging of magnetic nanostructures by X-ray spectro-holography

机译:X射线光谱全息术对磁性纳米结构的无透镜成像

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Our knowledge of the structure of matter is largely based on X-ray diffraction studies of periodic structures and the successful transformation ( inversion) of the diffraction patterns into real-space atomic maps. But the determination of non-periodic nanoscale structures by X-rays is much more difficult. Inversion of the measured diffuse X-ray intensity patterns suffers from the intrinsic loss of phase information(1,2), and direct imaging methods are limited in resolution by the available X-ray optics(3). Here we demonstrate a versatile technique for imaging nanostructures, based on the use of resonantly tuned soft X-rays for scattering contrast and the direct Fourier inversion of a hololetters graphically formed interference pattern. Our implementation places the sample behind a lithographically manufactured mask with a micrometre-sized sample aperture and a nanometre-sized hole that defines a reference beam. As an example, we have used the resonant X-ray magnetic circular dichroism effect to image the random magnetic domain structure in a Co/Pt multilayer film with a spatial resolution of 50 nm. Our technique, which is a form of Fourier transformholography, is transferable to a wide variety of specimens, appears scalable to diffraction-limited resolution, and is well suited for ultrafast single-shot imaging with coherent X-ray free-electron laser sources(4).
机译:我们对物质结构的了解主要是基于对周期性结构的X射线衍射研究以及衍射图样成功转换(倒置)为真实空间原子图的基础。但是,通过X射线确定非周期性纳米级结构要困难得多。所测量的漫射X射线强度模式的反转会遭受相位信息的固有损失(1,2),而直接成像方法的分辨率受到可用X射线光学器件的限制(3)。在这里,我们基于共振调谐的软X射线用于散射对比度和全息图以图形方式形成的干涉图案的直接傅里叶反演,展示了一种用于纳米结构成像的通用技术。我们的实现将样品放置在光刻制造的掩膜后面,该掩膜具有微米级的样品孔径和纳米级的孔,该孔定义了参考光束。例如,我们已经使用共振X射线磁性圆二色性效应对空间分辨率为50 nm的Co / Pt多层膜中的随机磁畴结构进行成像。我们的技术是傅里叶变换全息术的一种形式,可转移到各种标本中,似乎可扩展到衍射极限分辨率,非常适合于使用相干X射线自由电子激光源进行超快单次成像(4) )。

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