首页> 外文会议>Photonic Metamaterials; Proceedings of SPIE-The International Society for Optical Engineering; vol.6638 >Optical properties of metamaterials based on porous channel photonic structures and applications for optical DEVICES
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Optical properties of metamaterials based on porous channel photonic structures and applications for optical DEVICES

机译:基于多孔通道光子结构的超材料的光学性质及其在光学器件中的应用

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Optical properties of a new kind of metamaterials based on hierarchically organized mirror channels with semitransparent walls, metamirror structures (MMS) are considered. Despite the difference in physical mechanisms, some properties of MMS i.e. transmission and reflection are close to that exhibited by left-handed materials. The ray tracing is considered for different MMS geometries and types. It is shown that one-step reflective 2D MMS based on rectangular elementary cells being properly curved possess lens properties and MMS lens generalized law is derived. Properties of a mirror lens prototype with the finite meta-focus position made from one layer 2D MMS with reflecting walls are evaluated theoretically and experimentally. Micro-machine mirror systems and modified macroporous structures are discussed as mirror lens devices.
机译:考虑了基于具有半透明壁的分层组织的反射镜通道的新型超材料的光学特性,即超反射镜结构(MMS)。尽管物理机制有所不同,但是MMS的某些特性(即透射和反射)与左手材料所显示的特性接近。对于不同的MMS几何形状和类型,可以考虑光线跟踪。结果表明,基于矩形基本单元适当弯曲的一步反射式二维MMS具有透镜特性,并推导了MMS透镜的广义律。从理论上和实验上评估了由具有反射壁的一层2D MMS制成的具有有限元焦点位置的镜面镜片原型的性能。讨论了微机镜系统和改进的大孔结构作为镜透镜装置。

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