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Hybrid plasmonic optical modulator based on multi-layer graphene

机译:基于多层石墨烯的混合等离激元光调制器

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Hybrid plasmonic waveguide provided high confinement of the propagating light and it is compatible with silicon on insulator technology. Graphene with unique optical properties has been used in optical modulator to give a high extinction ratio, broadband operation, and small footprint. In this paper, we used graphene as an absorber layer in a hybrid plasmonic waveguide structure to get sub-wavelength field confinement and better interaction between the graphene and the propagating light to reach maximum absorption of the graphene. We studied the effects of a different number (2-6) of the graphene layers on the extinction ratio, bandwidth, and energy consumption. The modulation extinction ratio is as high as 36 dB/mu m and it has a flat response in a wide range of wavelength. The power consumption is about 14 fJ/bit. This modulator has a good response in all communication bands.
机译:混合等离子体激元波导提供了对传播光的高度限制,并且与绝缘体上硅技术兼容。具有独特光学性能的石墨烯已用于光调制器中,以提供高消光比,宽带工作和小占位面积。在本文中,我们使用石墨烯作为混合等离子体激元波导结构中的吸收层,以限制亚波长场,并改善石墨烯与传播光之间的相互作用,从而最大程度地吸收石墨烯。我们研究了不同数量(2-6)的石墨烯层对消光比,带宽和能耗的影响。调制消光比高达36 dB /μm,并且在宽波长范围内具有平坦的响应。功耗约为14 fJ /位。该调制器在所有通信频段均具有良好的响应。

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