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Scanning near-field optical microscopy and near-field optical probes: properties, fabrication, and control of parameters

机译:扫描近场光学显微镜和近场光学探针:特性,制造和参数控制

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摘要

A brief review of modern applications of scanning near-field optical (SNO) devices in microscopy, spectroscopy, and lithography is presented in the introduction. The problem of the development of SNO probes, as the most important elements of SNO devices determining their resolution and efficiency, is discussed. Based on the works of the authors, two different methods for fabricating SNO probes by using the adiabatic tapering of an optical fibre are considered: the laser-heated mechanical drawing and chemical etching. A nondestructive optical method for controlling the nanometre aperture of SNO probes is proposed, substantiated, and tested experimentally. The method is based on the reconstruction of a near-field source with the help of a theoretical algorithm of the inverse problem from the experimental far-filed intensity distribution. Some prospects for a further refinement of the construction and technology of SNO probes are discussed.
机译:简介中简要介绍了扫描近场光学(SNO)器件在显微镜,光谱学和光刻中的现代应用。讨论了作为SNO设备最重要的要素,决定其分辨率和效率的SNO探头的开发问题。基于作者的工作,考虑了使用光纤的绝热锥度制造SNO探针的两种不同方法:激光加热机械拉伸和化学蚀刻。提出,证实和试验了一种用于控制SNO探针纳米孔径的非破坏性光学方法。该方法基于借助实验远场强度分布的反问题的理论算法,基于近场源的重建。讨论了进一步完善SNO探针的结构和技术的一些前景。

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