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Analytical models for electrically thin flat lenses and reflectors

机译:薄电镜和反射镜的分析模型

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This work presents analytical models for two-dimensional (2D) and three-dimensional (3D) electrically thin lenses and reflectors. The 2D formulation is based on infinite current line sources, whereas the 3D formulation is based on electrically small dipoles. These models emulate the energy convergence of an electrically thin flat lens and reflector when illuminated by a plane wave with specific polarization. The advantages of these models are twofold: first, prediction of the performance of electrically thin flat lenses and reflectors can be made significantly faster than full-wave simulators, and second, providing insight on the performance of these electrically thin devices. The analytic models were validated by comparison with full-wave simulation for several interesting examples. The validation results show that the focal point of the electrically thin flat lenses and reflectors can be accurately predicted through a design that assumes low coupling between different layers of an inhomogeneous media. (C) 2015 Optical Society of America
机译:这项工作介绍了二维(2D)和三维(3D)电薄透镜和反射镜的分析模型。 2D公式基于无限电流线源,而3D公式基于电气小偶极子。这些模型模拟了电薄平板透镜和反射镜在被特定偏振的平面波照射时的能量会聚。这些模型的优点是双重的:首先,可以比全波模拟器更快地预测出电子薄型平面透镜和反射镜的性能,其次,可以洞察这些电子薄型设备的性能。通过与全波仿真比较,对几个有趣的示例进行了验证,从而验证了解析模型。验证结果表明,通过假设不均匀介质的不同层之间的耦合较低的设计,可以精确地预测薄电平面透镜和反射镜的焦点。 (C)2015年美国眼镜学会

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