首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Left-handed electromagnetism obtained via nanostructured metamaterials: comparison with that from microstructured photonic crystals
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Left-handed electromagnetism obtained via nanostructured metamaterials: comparison with that from microstructured photonic crystals

机译:通过纳米结构超材料获得的左手电磁:与微结构光子晶体的比较

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摘要

In this work, we review some of the key issues for designing dielectric and metallic arrays in the diffraction or refraction regimes with main emphasis on left-handed electromagnetism. We first discuss dispersion characteristics of periodic dielectric arrays which are structured on the wavelength scale (photonic crystals for optics and electromagnetic band gaps for microwaves) with special attention paid to propagation and refraction effects. Special attention was also paid to the isotropy properties in the Brillouin zone with the prospects of defining a negative refractive index. Then, we considered metallic structures which permit one to synthesize double-negative media with the goal of pushing their operation frequency into the infrared region. For both classes of microstructures and nanostructures, the technological challenges will be addressed by considering air hole arrays in a high refractive index semiconductor substrate and embedded C-shaped and wire metal arrays patterned on low index substrates.
机译:在这项工作中,我们回顾了在衍射或折射方案中设计介电和金属阵列的一些关键问题,主要侧重于左手电磁。我们首先讨论周期性电介质阵列的色散特性,该结构在波长范围内构造(光学的光子晶体和微波的电磁带隙),并特别关注传播和折射效应。还特别注意了布里渊区的各向同性特性,并具有定义负折射率的前景。然后,我们考虑了允许人们合成双重负性媒介的金属结构,目的是将它们的工作频率推向红外区域。对于两种类型的微结构和纳米结构,将通过考虑高折射率半导体衬底中的气孔阵列以及在低折射率衬底上构图的嵌入式C形和金属丝阵列来解决技术难题。

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