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Resonance Optical Effects and Artificial Microphotonic Electromagnetic Materials

机译:共振光学效应和人工微光子电磁材料

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摘要

Brief historical background is given of appearing of unified exact approach, the so called transfer relations, to the theory of multiple scattering of wave fields in inhomogeneous discrete dielectric media. One dimensional (1D) diffraction gratings and two dimensional (2D) photonic crystals (PCs) are considered as particular types of inhomogeneous media with spatial periodicity. A few application oriented items are presented as a result of computations on the basis of transfer relations, regarding 2D PCs as a stack of 1D diffraction gratings and applying technique of matrix Riccati equation. Two first items are 2D PCs and hollow pin structure. The last two items are two methods of optical monitoring. The first is a quantitative approach to optical grating nanoshape control. The last item that is spatial spectroscopy of electromagnetic wave near fields definitely answered the question is it possible to retrieve subwavelength information in the near field microscopy.
机译:简要介绍了统一的精确方法的出现的历史背景,即所谓的转移关系,这种理论是对非均匀离散电介质中波场的多重散射的理论。一维(1D)衍射光栅和二维​​(2D)光子晶体(PC)被视为具有空间周期性的非均匀介质的特定类型。根据转移关系的计算结果,提出了一些面向应用的项目,其中涉及将2D PC作为一维衍射光栅的堆栈以及矩阵Riccati方程的应用技术。头两个项是2D PC和空心销结构。最后两项是光学监视的两种方法。第一种是定量控制光栅纳米形状的方法。最后一项是电磁波近场的空间光谱学,无疑回答了以下问题:是否可以在近场显微镜中检索亚波长信息。

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