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Tailoring the emission polarization with metasurface-based emitters designed on a plasmonic ridge waveguide

机译:调整发射极化metasurface-based发射器设计上电浆脊波导

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Because of low propagation losses and flexible communication paths, inter-chip optical communications based on plasmonic emitters and receivers can overcome the obstacle of the inherent ohmic loss in metallic nanostructures. To increase the communication capacity and integration density in inter-chip optical communications, we propose to tailor the polarization states of the free-radiation fields from the emitters in both the spectral domain and spatial domain by designing the phased and polarized arrangement of subwavelength metallic nanogroove antennas on a two-dimensional plasmonic ridge waveguide. Herein, the utilization of the two-dimensional plasmonic waveguide with tight field confinements considerably decreases the crosstalk to nearby plasmonic devices in plasmonic circuits and chips. In the spectral domain, three different polarization states of the free-radiation fields from the same emitter are experimentally realized at three specific wavelengths. In the spatial domain, the different polarization states as well as the gear polarization states are experimentally demonstrated. Moreover, the separation of the adjacent polarization-tailoring plasmonic emitters is only 5% of that in dielectric emitters because of the ultra-compact size (< 0.6.2) of metasurface-based plasmonic emitters.
机译:因为较低的传播损失和灵活通信路径,inter-chip光学基于电浆排放和通信接收器可以克服的障碍在金属纳米结构固有的欧姆损失。提高沟通能力和在inter-chip光学集成密度沟通,我们建议调整偏振状态的free-radiation字段从光谱域和发射器通过设计阶段性和空间域亚波长金属极化安排在一个二维nanogroove天线电浆脊波导。利用二维电浆波导与紧磁场极限的大大降低了相声附近在电浆电路和电浆设备芯片。偏振状态的free-radiation字段从同一发射器实验实现三种特定波长。域,不同极化状态齿轮的偏振状态实验证明。邻polarization-tailoring分离电浆排放的仅为5%介质排放国,因为非常紧凑大小(< 0.6.2)metasurface-based电浆发射器。

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