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Compact couplers between dielectric and plasmonic slot waveguides

机译:电介质和等离子体槽波导之间的紧凑耦合器

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We theoretically investigate the properties of compact couplers between high-index contrast dielectric slab waveguides and two-dimensional metal-dielectric-metal subwavelength plasmonic waveguides. We show that a coupler created by simply placing a dielectric waveguide terminated flat at the exit end of a plasmonic waveguide can be designed to have a transmission efficiency of ~70% at the optical communication wavelength. We also show that the transmission efficiency of the couplers can be further increased by using optimized multisection tapers. In both cases the transmission response is broadband. In addition, we investigate the properties of a Fabry-Perot structure in which light is coupled in and out of a plasmonic waveguide sandwiched between dielectric waveguides. Finally, we discuss potential fabrication processes for structures that demonstrate the predicted effects.
机译:理论上,从理论上研究了高折射率对比电介质板波导和二维金属介质 - 金属亚波长等级波导之间的紧凑耦合器的性能。 我们表明,通过简单地将介电波导终止于等离子体波导的出射端的介电波导终止的耦合器可以设计成在光学通信波长处具有〜70%的传输效率。 我们还表明,通过使用优化的多部分子锥形,可以进一步提高耦合器的传输效率。 在这两种情况下,传输响应是宽带。 此外,我们研究了一种法布里 - 珀罗结构的性质,其中光在夹在电介质波导之间的等离子体波导中耦合。 最后,我们讨论了证明预测效果的结构的潜在制造过程。

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