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Development of a Scanning X-ray Fluorescence Microscope Using Size-Controllable Focused X-ray Beam from 50 to 1500nm

机译:使用50至1500nm的尺寸可控聚焦X射线光束的扫描X射线荧光显微镜的开发

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In scanning X-ray microscopy, focused beam intensity and size are very important from the viewpoints of improvements of various performances such as sensitivity and spatial resolution. The K-B mirror optical system is considered to be the most promising method for hard X-ray focusing, allowing highly efficient and energy-tunable focusing. We developed focusing optical system using K-B mirrors where the focused beam size is controllable within the range of 50 – 1500 nm. The focused beam size and beam intensity can be adjusted by changing the source size, although beam intensity and size are in a trade-off relationship. This controllability provides convenience for microscopy application. Diffraction limited focal size is also achieved by setting the source size to 10 μm. Intracellular elemental mappings at the single-cell level were performed to demonstrate the performance of the scanning X-ray fluorescence microscope equipped with the optical system at the BL29XUL of SPring-8. We will show magnified elemental images with spatial resolution of ~70 nm.
机译:从诸如灵敏度和空间分辨率的各种性能的改进的观点来看,聚焦光束强度和大小非常重要。 K-B镜子光学系统被认为是硬X射线聚焦最有希望的方法,允许高效和可调可调聚焦。我们开发了使用K-B镜子的聚焦光学系统,其中聚焦光束尺寸可控制在50-1500nm的范围内。可以通过改变源极尺寸来调节聚焦光束尺寸和光束强度,但是光束强度和大小处于折衷关系。这种可控性为显微镜应用提供了便利性。通过将源大小设定为10μm,还可以实现衍射限制焦点。进行单细胞水平的细胞内元素映射以证明扫描X射线荧光显微镜的性能配备有光学系统的弹簧-8的BL29XUL。我们将显示带有〜70nm的空间分辨率的放大的元素图像。

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