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Three-dimensional numerical modeling of photonic integration with dielectric-loaded SPP waveguides

机译:介质加载的SPP波导光子集成的三维数值建模

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摘要

Using full three-dimensional numerical modeling, we demonstrate highly efficient passive and active photonic circuit elements based on dielectric-loaded surface plasmon polariton waveguides (DLSPPWs). Highly confined surface plasmon polariton (SPP) mode having subwavelength cross section allows high level of integration of DLSPPW circuitry. We demonstrate very efficient guiding and routing of SPP signals with the passive waveguide elements such as bends, splitters, and Bragg reflectors, having a functional size of just a few microns at telecommunication wavelengths. Introducing a gain in the dielectric, we have found the requirement for lossless waveguiding and estimated the performance of DLSPPW lossless and active elements. DLSPPW based components have prospective implementation in photonic integrated chips, hybrid optical-electronic circuits, and lab-on-a-chip applications.
机译:使用完整的三维数值模型,我们演示了基于介电负载的表面等离子体激元极化波导(DLSPPWs)的高效无源和有源光子电路元件。具有亚波长横截面的高度受限的表面等离振子极化(SPP)模式可实现DLSPPW电路的高度集成。我们演示了使用无源波导元件(例如折弯,分离器和布拉格反射器)对SPP信号进行非常有效的引导和路由,这些功能在电信波长下的功能尺寸仅为几微米。通过引入电介质的增益,我们发现了无损波导的要求,并估算了DLSPPW无损有源元件的性能。基于DLSPPW的组件已在光子集成芯片,混合光电子电路和片上实验室应用中得到了预期的实现。

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