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A grating-bicoupled plasma-wave photomixer with resonant-cavity enhanced structure

机译:具有谐振腔增强结构的光栅双耦合等离子体波光混合器

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摘要

A novel terahertz plasma-wave photomixer that can improve the conversion gain and terahertz radiation power is proposed and evaluated. The photomixer is based on a high-electron mobility transistor and incorporates doubly interdigitated grating strips for the gate electrodes that periodically localize the 2D plasmons in 100-nm regions with a micron-order interval. A vertical cavity structure is formed in between the top metal grating and a terahertz mirror placed at the backside. The device features electronic tuning of plasmon characteristic frequencies, providing continuously-tunable operation below 1 THz to beyond 10 THz. Frequency-dependent finite-differential time-domain analysis demonstrates that the grating-bicoupled plasmonic structure acts as a broadband terahertz photomixer and antenna and that the vertical cavity structure effectively enhances the conversion gain and radiation power
机译:提出并评估了一种新型的太赫兹等离子体波光混频器,它可以提高转换增益和太赫兹辐射功率。该光混合器基于高电子迁移率晶体管,并为栅电极合并了双指状光栅条,该光栅条以微米级的间隔周期性地将2D等离子体激元定位在100 nm区域中。在顶部金属光栅和置于背面的太赫兹镜之间形成垂直腔结构。该器件具有电子调谐等离激元特征频率的功能,可在1 THz以下至10 THz以上的范围内连续可调操作。频率相关的时域有限差分分析表明,光栅双耦合等离子体结构可作为宽带太赫兹光混频器和天线,垂直腔结构可有效提高转换增益和辐射功率

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