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首页> 外文期刊>Journal of computational and theoretical nanoscience >Polarization mode coupling due to metal-layer modifications in apertureless near-field scanning optical microscopy probes
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Polarization mode coupling due to metal-layer modifications in apertureless near-field scanning optical microscopy probes

机译:由于无孔近场扫描光学显微镜探针中金属层的修饰而导致的偏振模式耦合

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Apertureless near-field scanning optical microscopy (NSOM) probes are known to produce a highly spatially localized emitted optical near field with an axisymmetric, radially polarized input. Using rigorous three-dimensional electromagnetic modeling tools, we investigate the conversion of a linearly polarized input to this mode in such a probe due to rectangular slit defects introduced in the metal coating layer of the probe. Two types of defect configurations are studied: unilateral slits-a rectangular slit carved radially into one side of the probe-and bilateral slits-consisting of a rectangular slit that transects a chord of the probe. The latter are found to be more effective for this mode conversion process. In addition, the role of the slit width, depth, and offset are studied, and an optimal slit configuration is determined. These results indicate an approach for fabricating apertureless NSOM probes having efficient polarization conversion properties, facilitating the development of improved-performance NSOM systems.
机译:已知无孔近场扫描光学显微镜(NSOM)探头可产生具有轴对称,径向偏振输入的高度空间局部发射的光学近场。使用严格的三维电磁建模工具,我们研究了由于探针金属涂层中引入的矩形狭缝缺陷,在这种探针中线性极化输入到此模式的转换。研究了两种类型的缺陷构造:单边狭缝-径向刻在探头一侧的矩形狭缝-和双向狭缝-由横切探头弦的矩形狭缝组成。发现后者对于此模式转换过程更有效。此外,研究了缝隙宽度,深度和偏移量的作用,并确定了最佳缝隙配置。这些结果表明一种用于制造具有有效偏振转换特性的无孔NSOM探针的方法,从而有助于开发性能更高的NSOM系统。

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