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硅基等离子体波导

Silicon-based plasmonic waveguides.

作者信息

Krasavin Alexey V, Zayats Anatoly V

机构信息

Centre for Nanostructured Media, IRCEP, The Queen's University of Belfast, Belfast, BT7 1NN, UK.

出版信息

Opt Express. 2010 May 24;18(11):11791-9. doi: 10.1364/OE.18.011791.

Abstract

We propose and comprehensively investigate Si-based plasmonic waveguides as a means to confine and manipulate photonic signals. The high refractive index of Si assures strong confinement and a very high level of photonic integration with achievable waveguide separations of the order of 10 nm and waveguide bends with 500 nm radius at telecommunication wavelengths, while using Al and Cu plasmonic material platforms, makes such waveguides fully compatible with existing CMOS fabrication processes. Their potential future in hybrid electronic/photonic chips is further reinforced as various configurations have been shown to compensate SPP propagation loss. The group velocity dispersion of such waveguides allows over 10 Tb/s signal transfer rates. The figures of merit allowing comparison of passive and active functionalities achievable with various waveguides have also been introduced.

摘要

我们提出并全面研究了基于硅的等离子体波导,将其作为一种限制和操纵光子信号的手段。硅的高折射率确保了强限制以及在电信波长下可实现约10纳米量级的波导间距和500纳米半径的波导弯曲的非常高的光子集成水平,同时使用铝和铜等离子体材料平台,使得这种波导与现有的CMOS制造工艺完全兼容。由于已证明各种配置可补偿表面等离激元传播损耗,它们在混合电子/光子芯片中的潜在未来得到了进一步加强。这种波导的群速度色散允许超过10太比特/秒的信号传输速率。还引入了用于比较各种波导可实现的无源和有源功能的品质因数。

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