首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >HYBRID Simulations of Diffraction-Limited Focusing with Kirkpatrick-Baez Mirrors for a Next-Generation In Situ Hard X-ray Nanoprobe
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HYBRID Simulations of Diffraction-Limited Focusing with Kirkpatrick-Baez Mirrors for a Next-Generation In Situ Hard X-ray Nanoprobe

机译:衍射限制的混合仿真与Kirkpatrick-Baez镜子进行下一代原位硬X射线Nanoprobe

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Next-generation hard X-ray nanoprobe beamlines such as the In Situ Nanoprobe (ISN) beamline being planned at the Advanced Photon Source aim at providing very high spatial resolution while also enabling very high focused flux, to study complex materials and devices using fast, multidimensional imaging across many length scales. The ISN will use diffractive optics to focus X-rays with a bandpass of a dagger E/E = 10(-4) into a focal spot of 20 nm or below. Reflective optics in Kirkpatrick-Baez geometry will be used to focus X-rays with a bandpass as large as a dagger E/E = 10(-2) into a focal spot of 50 nm. Diffraction-limited focusing with reflective optics is achieved by spatial filtering and use of a very long, vertically focusing mirror. To quantify the performance of the ISN beamline, we have simulated the propagation of both partially and fully coherent wavefronts from the undulator source, through the ISN beamline and into the mirror-based focal spot. Simulations were carried out using the recently developed software "HYBRID.".
机译:下一代硬X射线纳米孔光束如诸如原位Nanopobe(ISN)束线上,在先进的光子源上计划,目的是提供非常高的空间分辨率,同时也能够使用快速地研究复杂的材料和器件的非常高的空间分辨率,多维成像在许多长度尺度上。 ISN将使用衍射光学器件将具有匕首E / E = 10(-4)的带通集中的X射线聚焦到20nm或以下的焦点。 Kirkpatrick-Baez几何中的反光光学器件将用于将带通带有的带通的X射线作为匕首e / e = 10(-2)的焦点聚焦到50 nm的焦点。通过空间滤波和使用非常长,垂直聚焦的镜子来实现具有反射光学元件的衍射限制的聚焦。为了量化ISN光束线的性能,我们已经通过ISN光束线和基于镜像的焦点模拟了从波纹源的部分和完全相干波前的传播。使用最近开发的软件“混合动力”进行模拟。

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