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Technology Optimization ot the Laser-Assisted SNOM-Tips Stretching

机译:激光辅助SNOM-Tips拉伸技术的优化

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摘要

Nowadays the near-field optical probe (NOP) for SNOM (scanning near-field optical microscopy) is mainly produced from optical fibers. The laser technology of NOP manufacturing is based on the local fiber area heating and following force stretching up to brake. Therefore the experimental setup consists of an optical scheme and mechanical system which are due to provide the local source of heat on the fiber surface and a proper regime of force application. As the NOP's geometric parameters principally determine the SNOM efficiency and, on the other hand, they are fully dependent on the manufacturing conditions it is important to find the optimal setup solution. While studying already existing schemes, we are making an attempt to find such a solution by taking care of precise mechanics capable of symmetrical pulling performance and developing a non-standard optical scheme for determined local uniform illumination of the fiber.
机译:如今,SNOM(扫描近场光学显微镜)的近场光学探头(NOP)主要由光纤制成。 NOP制造的激光技术基于局部纤维区域的加热和跟随力的拉伸直至制动。因此,实验装置由光学方案和机械系统组成,这是由于在纤维表面上提供了局部热源以及适当的施力方式。由于NOP的几何参数主要决定了SNOM效率,另一方面,它们完全取决于制造条件,因此找到最佳的设置解决方案很重要。在研究已经存在的方案时,我们正在尝试通过照顾能够对称拉动性能的精密机械并开发用于确定光纤局部均匀照明的非标准光学方案来找到这样的解决方案。

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