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An infrared light polarized beam splitter based on graphene array

机译:基于石墨烯阵列的红外偏振分束器

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Metamaterials have attracted a lot of attention in the past decade, because of its remarkable properties in electronics and photonics. Recently, a new kind of two-dimensional metamaterials named metasurface have led the research front. Metasurfaces show up excellent optical properties by patterning planar nanostructures. Novel optical phenomena based on graphene include ultra-thin focusing, anomalous reflection or refraction strong spin-orbit and so on. In this work, we have designed a novel infrared light polarized beam splitter by combining the 2-D array of graphene with a subwavelength-thickness optical cavity, which demonstrated great splitting effect in infrared wavelength. Our demonstration pave a novel way for the infrared light polarized beam splitting.
机译:在过去的十年中,超材料由于其在电子和光子学中的卓越性能而吸引了很多关注。近来,一种新型的二维超材料-超表面(metasurface)-引领了研究前沿。通过图案化平面纳米结构,超颖表面表现出出色的光学性能。基于石墨烯的新型光学现象包括超薄聚焦,反常反射或折射强自旋轨道等。在这项工作中,我们通过将石墨烯的二维阵列与亚波长厚度的光学腔相结合,设计了一种新型的红外偏振分束器,该分光器在红外波长上显示出了巨大的分光效果。我们的演示为红外偏振光束分裂铺平了一条新途径。

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