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Near-Field Optics Imaging in Silica Waveguide Using Near-Field Scanning Optical Microscope

机译:使用近场扫描光学显微镜的石英波导中的近场光学成像

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摘要

We investigated the near-field optics imaging by a numerical method using special spherical chains created in a silica waveguide (SWG) and explored the possibility of how this can be used for near-field scanning optical microscopy (NSOM) applications. There are two types of spherical nanochain; type A includes nano-dielectric spheres connected closely, and type B includes silver nanoparticles 4 nm in diameter randomly distributed inside the nanospheres of type A. A spherical nanochain with the 80-nm-diameter spheres was embedded in the SWG. The interactions between light emerging from SWG and the electric field near the sample surface that affects the properties of the images produced by NSOM are analyzed using a three dimensional finite-difference time-domain method. The effects of the optical field distribution generated by some factors are also discussed. A method of controlling the light field localized in the SWG is proposed that uses the external protrusion (dielectric sphere). The proposed structure will yield some useful information and give an idea of applications in NSOM.
机译:我们使用在石英波导(SWG)中创建的特殊球形链,通过数值方法研究了近场光学成像,并探讨了将其用于近场扫描光学显微镜(NSOM)应用的可能性。球形纳米链有两种类型。 A型包含紧密连接的纳米介电球,B型包含直径随机分布在A型纳米球内部的直径为4 nm的银纳米颗粒。SWG中嵌入了直径为80 nm的球形纳米链。使用三维有限差分时域方法分析了SWG发出的光与样品表面附近电场之间的相互作用,这些相互作用影响了NSOM产生的图像的特性。还讨论了由某些因素产生的光场分布的影响。提出了一种使用外部突起(介电球)控制SWG中局部光场的方法。提出的结构将提供一些有用的信息,并给出在NSOM中的应用程序的想法。

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