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Generalized Maxwell fish-eye lens as a beam splitter: a case study in realizing all-dielectric devices from transformation electromagnetics

机译:通用麦克斯韦鱼眼镜头作为分束器:以转换电磁学实现全电介质器件的案例研究

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摘要

A 2-D generalized Maxwell fish-eye lens has been fabricated with all-dielectric polymer/ceramic composite materials and evaluated numerically and experimentally. The graded refractive index profile of the lens was discretized into a concentric-ring structure and functioned as a two-way beam splitter. Epoxy composites, with a broad dielectric constant range that can be precisely controlled, were used to cast the lens using a low-cost manufacturing method that can readily accommodate different geometries. The lens was tested with a near-field microwave imaging system to demonstrate its capability of controlling waves at an operating frequency of 18 GHz. The measured results had some differences from the expected behavior, which are considered in detail and provided some insights into the practical manufacturing and measurement constraints for graded dielectric composites. Possible routes to increase the number of output beams are discussed.
机译:用全介电聚合物/陶瓷复合材料制作了二维广义麦克斯韦鱼眼镜头,并进行了数值和实验评估。镜片的渐变折射率分布离散为同心环结构,并用作双向分束器。具有可精确控制的宽介电常数范围的环氧树脂复合材料,采用低成本的制造方法来浇铸镜片,该制造方法可轻松适应不同的几何形状。该透镜已通过近场微波成像系统进行了测试,以证明其在18 GHz的工作频率下控制波的能力。测量结果与预期行为有所不同,预期行为已得到详细考虑,并为渐变介电复合材料的实际制造和测量约束提供了一些见识。讨论了增加输出光束数量的可能途径。

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