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光子与银纳米线等离子体波导的集成

Integration of photonic and silver nanowire plasmonic waveguides.

作者信息

Pyayt Anna L, Wiley Benjamin, Xia Younan, Chen Antao, Dalton Larry

机构信息

Department of Electrical Engineering, University of Washington, Seattle, Washington 98105, USA.

出版信息

Nat Nanotechnol. 2008 Nov;3(11):660-5. doi: 10.1038/nnano.2008.281. Epub 2008 Oct 5.

Abstract

Future optical data transmission modules will require the integration of more than 10,000 x 10,000 input and output channels to increase data transmission rates and capacity. This level of integration, which greatly exceeds that of a conventional diffraction-limited photonic integrated circuit, will require the use of waveguides with a mode confinement below the diffraction limit, and also the integration of these waveguides with diffraction-limited components. We propose to integrate multiple silver nanowire plasmonic waveguides with polymer optical waveguides for the nanoscale confinement and guiding of light on a chip. In our device, the nanowires lay perpendicular to the polymer waveguide with one end inside the polymer. We theoretically predict and experimentally demonstrate coupling of light into multiple nanowires from the same waveguide, and also demonstrate control over the degree of coupling by changing the light polarization.

摘要

未来的光学数据传输模块将需要集成超过10000×10000个输入和输出通道,以提高数据传输速率和容量。这种集成水平大大超过了传统的衍射极限光子集成电路,将需要使用模式限制低于衍射极限的波导,以及将这些波导与衍射极限组件集成。我们建议将多个银纳米线等离子体波导与聚合物光波导集成,以在芯片上实现光的纳米级限制和引导。在我们的器件中,纳米线垂直于聚合物波导放置,一端在聚合物内部。我们从理论上预测并通过实验证明了光从同一波导耦合到多个纳米线中,并且还通过改变光偏振证明了对耦合程度的控制。

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