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A Next-Generation In-Situ Nanoprobe Beamline for the Advanced Photon Source

机译:用于高级光子源的下一代原位纳米孔光束线

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The Advanced Photon Source is currently developing a suite of new hard x-ray beamlines, aimed primarily at the study of materials and devices under real conditions. One of the flagship beamlines of the APS Upgrade is the In-Situ Nanoprobe beamline (ISN beamline), which will provide in-situ and operando characterization of advanced energy materials and devices under change of temperature and gases, under applied fields, in 3D. The ISN beamline is designed to deliver spatially coherent x-rays with photon energies between 4 keV and 30 keV to the ISN instrument. As an x-ray source, a revolver-type undulator with two interchangeable magnetic structures, optimized to provide high brilliance throughout the range of photon energies of 4 keV - 30 keV, will be used. The ISN instrument will provide a smallest hard x-ray spot of 20 nm using diffractive optics, with sensitivity to sub-10 nm sample structures using coherent diffraction. Using nanofocusing mirrors in Kirkpatrick-Baez geometry, the ISN will also provide a focus of 50 nm with a flux of 8?10~(11) Photons/s at a photon energy of 10 keV, several orders of magnitude larger than what is currently available. This will allow imaging of trace amounts of most elements in the periodic table, with a sensitivity to well below 100 atoms for most metals in thin samples. It will also enable nanospectroscopic studies of the chemical state of most materials relevant to energy science. The ISN beamline will be primarily used to study inorganic and organic photovoltaic systems, advanced batteries and fuel cells, nanoelectronics devices, and materials and systems designed to reduce the environmental impact of combustion.
机译:先进的光子源目前正在开发一套新的硬X射线波束线,主要针对实际条件下的材料和器件的研究。 APS升级的旗舰波束线之一是原位Nanoprobe波束线(ISN束线),它将在3D中的温度和气体的变化下提供先进的能量材料和设备的原位和Operando表征。 ISN光束线旨在将空间相干的X射线在4keV和30kev之间的光子能量到ISN仪器提供。作为X射线源,将使用具有两个可互换磁性结构的旋转型波动器,优化在4kev - 30kev的光子能量范围内提供高亮度。 ISN仪器将使用衍射光学器件提供20nm的最小硬X射线点,具有使用相干衍射的10nm样品结构的敏感性。在KirkPatrick-Baez几何中使用纳米焦镜,ISN还将提供50nm的焦点,磁通量为8?10〜(11)光子/ s的光子能量为10kev,比目前的几个数量级可用的。这将允许在周期表中成像大多数元素的痕量,其浓度低于100个原子的薄样本中大多数金属。它还将启用与能源科学相关的大多数材料的化学状态的纳米光谱研究。 ISN光束线将主要用于研究无机和有机光伏系统,先进的电池和燃料电池,纳米电子设备和旨在降低燃烧环境影响的材料和系统。

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