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Development of compact soft x-ray microscopy using a laser-produced plasma source

机译:使用激光产生的等离子体源进行紧凑型软X射线显微镜的开发

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We demonstrate compact transmission soft X-ray microscope system with 50 nm spatial resolution for the life and physical science. This x-ray microscope operates at photon energy from 284 eV to 543 eV, so called 'water window' region (2.3 ~ 4.4nm), where natural contrast between carbon (protein) and oxygen(water) allows imaging of unstained biological material in their natural, hydrated environment. The compact transmission soft x-ray microscope is based on a laser plasma x-ray source, tandem ellipsoidal condenser reflective optics, diffractive zone plate optics and x-ray sensitive charge-coupled device (CCD) to record an x-ray image. The source is a liquid-jet target laser plasma source, which is practically debris free and suitable for high average power operation. The flux, brightness and bandwidth of this source has been simulated and optimized for X-ray microscopy for biology application. A tandem ellipsoidal reflective mirror operates as condenser and illuminates the sample. The high resolution imaging is currently performed with a ~ 12% efficient nickel zone plate with an outmost zone width of 35nm. In conclusion, we suggested a possibility of the compact soft x-ray microscopy system with 50 nm spatial resolution as a suitable tool for the wide range of studies such as biological imaging, environmental samples, and nanostructure analysis.
机译:我们展示了紧凑的传动软X射线显微镜系统,具有50 nm的生命和物理科学的空间分辨率。该X射线显微镜在光子能量下从284 eV到543eV,所谓的“水窗”区域(2.3〜4.4nm),其中碳(蛋白质)和氧气(水)之间的自然对比允许未染色的生物材料成像他们的自然,水性环境。紧凑型传动软X射线显微镜基于激光等离子体X射线源,串联椭圆型冷凝器反射光学,衍射区板光学和X射线敏感电荷耦合装置(CCD)以记录X射线图像。源极是一种液体喷射目标激光等离子体源,其实际上是无碎屑,适合于高平均功率操作。该源的磁通量,亮度和带宽已经模拟和优化了生物学应用的X射线显微镜。串联椭圆形反射镜作为冷凝器,并照亮样品。高分辨率成像目前用〜12%的效率镍区板进行,最大的区域宽度为35nm。总之,我们建议紧凑型软X射线显微镜系统的可能性,具有50nm的空间分辨率作为适用于各种研究的合适工具,例如生物成像,环境样品和纳米结构分析。

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