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Polarization beam splitting through an anisotropic metamaterial slab realized by a layered metal-dielectric structure

机译:偏振光束通过层状金属介电结构实现的各向异性超材料平板的分裂

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摘要

We report a polarization beam splitter (PBS) utilizing the anomalous reflection and transmission of an anisotropic metamaterial slab. By properly design of the constitutive tensors of the slab, PBS is achieved with little dependence on incident angle and slab thickness. The realization of the proposed PBS in the optical range is achieved by layered metal-dielectric nanostructured system, which could be modeled as an effective anisotropic metamaterial with the desired constitutive tensors. The full-wave electromagnetic simulation has confirmed the optical polarization splitting with an extinction ratio of over 20 dB by a slab of an alternating silver and silicon carbide multilayer.
机译:我们报告了利用各向异性超材料平板的异常反射和透射的偏振分束器(PBS)。通过适当设计平板的本构张量,可以在几乎不依赖入射角和平板厚度的情况下获得PBS。所提出的PBS在光学范围内的实现是通过层状金属介电纳米结构系统实现的,该系统可以建模为具有所需本构张量的有效各向异性超材料。全波电磁仿真已通过一块交替排列的银和碳化硅多层板确认了消光比超过20 dB的光偏振分裂。

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