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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Optimization design of optical waveguide control by nanoslit-enhanced THz field
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Optimization design of optical waveguide control by nanoslit-enhanced THz field

机译:纳米狭缝太赫兹场控制光波导的优化设计

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摘要

We discuss design issues of devices which were proposed recently [Opt. Lett. 37 (2012) 3903] for terahertz (THz) control of the propagation of an optical waveguide mode. The mode propagates through a nonlinear dielectric material placed in a metallic nanoslit illuminated by THz radiation. The THz field in the slit is strongly localized and thus significantly enhanced, facilitating nonlinear interactions with the dielectric waveguide material. This enhancement can lead to notable changes in the refractive index of the waveguide. The closer the waveguide is to the slit walls, the higher the nonlinear effects are, but with the cost of increasing propagation losses due to parasitic coupling to surface plasmon polaritons at the metal interfaces. We analyze several optical waveguide configurations and define a figure of merit that allows us to design the optimal configuration. We find that designs with less overlap of the THz and optical fields but also with lower losses are better than designs where both these parameters are higher. The estimated terahertz field incident onto the metallic nanoslit required to manipulate the waveguide mode has reasonable values which can be achieved in practice.
机译:我们讨论了最近提出的设备设计问题。来吧37(2012)3903]用于光波导模式传播的太赫兹(THz)控制。该模式通过置于THz辐射照亮的金属纳米缝隙中的非线性介电材料传播。狭缝中的太赫兹场被强烈地局域化,因此得到显着增强,从而促进了与介电波导材料的非线性相互作用。这种增强可以导致波导的折射率发生显着变化。波导越靠近缝隙壁,非线性效应越高,但是由于寄生耦合到金属界面上的表面等离激元极化子,因此增加了传播损耗,但代价是。我们分析了几种光波导配置,并定义了一个品质因数,使我们可以设计最佳配置。我们发现,与太赫兹和光场重叠较少但损耗较低的设计相比,这两个参数均较高的设计更好。估计的入射到操纵波导模式所需的金属纳米狭缝上的太赫兹场具有可以在实践中实现的合理值。

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