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Spectroscopic scanning near-field optical microscopy with a free electron laser: CH2 bond imaging in diamond films

机译:自由电子激光的光谱扫描近场光学显微镜:金刚石膜中的CH2键成像

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摘要

Hydrogen chemistry in thin films and biological systems is one of the most difficult experimental problems in today's science and technology We successfully tested a novel solution, based on the spectroscopic version of scanning near-field optical microscopy (SNOM). The tunable infrared radiation of the Vanderbilt free electron laser enabled us to reveal clearly hydrogen-decorated grain boundaries on nominally hydrogen-free diamond films. The images were obtained by SNOM detection of reflected 3.5 mum photons, corresponding to the C-H stretch absorption, and reached a lateral resolution of 0.2 mum, well below the lambda /2 (lambda = wavelength) limit of classical microscopy. [References: 12]
机译:薄膜和生物系统中的氢化学是当今科学技术中最困难的实验问题之一。我们基于扫描近场光学显微镜(SNOM)的光谱版本成功测试了一种新颖的解决方案。范德比尔特自由电子激光的可调红外辐射使我们能够清楚地揭示名义上无氢的金刚石薄膜上装饰有氢的晶界。通过SNOM检测反射的3.5微米光子(对应于C-H拉伸吸收)获得的图像,并达到0.2微米的横向分辨率,远低于经典显微镜的λ/ 2(λ=波长)极限。 [参考:12]

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