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Table-Top Water-Window Microscope Using a Capillary Discharge Plasma Source with Spatial Resolution 75 nm

机译:台式水窗显微镜使用毛细管放电等离子体源,空间分辨率75 nm

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摘要

We present a design of a compact transmission water-window microscope based on the Z-pinching capillary discharge nitrogen plasma source. The microscope operates at wavelength of 2.88 nm (430 eV), and with its table-top dimensions provides an alternative to large-scale soft X-ray (SXR) microscope systems based on synchrotrons and free-electron lasers. The emitted soft X-ray radiation is filtered by a titanium foil and focused by an ellipsoidal condenser mirror into the sample plane. A Fresnel zone plate was used to create a transmission image of the sample onto a charge-coupled device (CCD) camera. To assess the resolution of the microscope, we imaged a standard sample-copper mesh. The spatial resolution of the microscope is 75 nm at half-pitch, calculated via a 10–90% intensity knife-edge test. The applicability of the microscope is demonstrated by the imaging of green algae-Desmodesmus communis. This paper describes the principle of capillary discharge source, design of the microscope, and experimental imaging results of Cu mesh and biological sample.
机译:我们介绍了一种基于Z型夹紧毛细管放电氮等离子体源的紧凑型传动水窗显微镜设计。显微镜以2.88nm(430eV)的波长为工作,其桌面尺寸为基于同步调节和自由电子激光器的大型软X射线(SXR)显微镜系统提供了替代方案。发射的软X射线辐射通过钛箔过滤并通过椭圆形冷凝器镜聚焦到样品平面中。使用菲涅耳区板将样品的透射图像产生到电荷耦合器件(CCD)相机上。为了评估显微镜的分辨率,我们成像标准样品 - 铜网。在半间距下显微镜的空间分辨率为75nm,通过10-90%的强度刀刃测试计算。通过绿藻 - Desmodesmus Communis的成像证明了显微镜的适用性。本文介绍了毛细管放电源,显微镜设计的原理,以及Cu网格和生物样品的实验成像结果。

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