Mahigir Amirreza, Dastmalchi Pouya, Shin Wonseok, Fan Shanhui, Veronis Georgios
Opt Express. 2015 Aug 10;23(16):20549-62. doi: 10.1364/OE.23.020549.
We theoretically investigate three-dimensional plasmonic waveguide-cavity structures, built by side-coupling stub resonators that consist of plasmonic coaxial waveguides of finite length, to a plasmonic coaxial waveguide. The resonators are terminated either in a short or an open circuit. We show that the properties of these waveguide-cavity systems can be accurately described using a single-mode scattering matrix theory. We also show that, with proper choice of their design parameters, three-dimensional plasmonic coaxial waveguide-cavity devices and two-dimensional metal-dielectric-metal devices can have nearly identical transmission spectra. Thus, three-dimensional plasmonic coaxial waveguides offer a platform for practical implementation of two-dimensional metal-dielectric-metal device designs.
我们从理论上研究了三维等离子体波导 - 腔结构,该结构是通过将由有限长度的等离子体同轴波导组成的侧边耦合短截线谐振器与等离子体同轴波导耦合而成。谐振器的终端要么是短路,要么是开路。我们表明,使用单模散射矩阵理论可以准确描述这些波导 - 腔系统的特性。我们还表明,通过适当选择其设计参数,三维等离子体同轴波导 - 腔器件和二维金属 - 电介质 - 金属器件可以具有几乎相同的传输光谱。因此,三维等离子体同轴波导为二维金属 - 电介质 - 金属器件设计的实际实现提供了一个平台。