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Metasurface electrode light emitting diodes with planar light control

机译:具有平面光控制的超表面电极发光二极管

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摘要

The ability of metasurfaces to manipulate light at the subwavelength scale offers unprecedented functionalities for passive and active lasing devices. However, applications of metasurfaces to optical devices are rare due to fabrication difficulties. Here, we present quantum dot light emitting diodes (QDLEDs) with a metasurface-integrated metal electrode and demonstrate microscopically controlled LED emission. By incorporating slot-groove antennas into the metal electrode, we show that LED emission from randomly polarized QD sources can be polarized and directed at will. Utilizing the relation between polarization and emission direction, we also demonstrate microscopic LED beam splitting through the selective choice of polarization.
机译:超表面在亚波长范围内操纵光的能力为无源和有源激光设备提供了前所未有的功能。然而,由于制造困难,很少将超表面应用于光学装置。在这里,我们介绍了具有超表面集成金属电极的量子点发光二极管(QDLED),并演示了微观控制的LED发射。通过将槽形天线合并到金属电极中,我们显示了来自随机极化QD源的LED发射可以被极化并随意定向。利用偏振与发射方向之间的关系,我们还演示了通过选择性选择偏振来实现的微观LED光束分离。

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