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Effect of the plasmonic dispersion relation on the transmission properties of subwavelength holes

机译:等离子体扩散关系对亚波长空穴传输特性的影响

摘要

Using a realistic plasmonic model, an optically thick electrically conductive film with subwavelength hole or holes therein is shown to always support propagating modes near the surface plasmon frequency, where cross-sectional dimensions of the hole or holes are less than about λ/2nh, λ being the wavelength of the light and nh the refractive index of the dielectric material in the hole or holes. This is the case even when material losses are taken into account. Based on the dispersion analysis, in both a single hole or hole array designs, propagating modes play a dominant role in the transport properties of incident light. These structures exhibit a new region of operation, while featuring a high packing density and diffraction-less behavior. These structures can be used in near-field scanning optical microscopy, in collection and emission modes, for writing data to an optical storage device, as wavelength-selective optical filters, for multispectral imaging of a sample, as photolithography masks for transferring an image to a photoresist-coated substrate, as light emitters, light collectors and light modulators.
机译:使用实际的等离激元模型,显示了其中具有一个或多个亚波长孔的光学厚度的导电膜始终支持接近表面等离激元频率的传播模式,其中一个或多个孔的横截面尺寸小于约λ/ 2n h ,λ是光的波长,n h 是一个或多个孔中介电材料的折射率。即使考虑到材料损失,情况也是如此。基于色散分析,在单孔或孔阵列设计中,传播模式在入射光的传输特性中起主要作用。这些结构展示了一个新的操作区域,同时具有高堆积密度和无衍射特性。这些结构可用于近场扫描光学显微镜中,以收集和发射模式使用,以将数据写入光存储设备,作为波长选择性滤光器,用于样品的多光谱成像,作为用于将图像转印到图像的光刻掩模。涂有光致抗蚀剂的基板,作为发光器,集光器和光调制器。

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