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Fabrication and optical characteristics of silicon-based two-dimensional photonic crystal wavelength division multiplexing splitter

机译:硅基二维光子晶体波分复用分路器的制作及光学特性

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Photonic crystals have many potential applications because of their ability to control light-wave propagation. In this paper, we have investigated PC-based optical waveguides implemented into wavelength division multiplexing (WDM) systems. The WDM splitters based on a PC waveguide coupler with square lattice are proposed. Their wavelength multiplexing properties are numerically investigated by using the finite-difference time-domain method. Rod-type photonic crystal structures were fabricated in silicon by electron beam lithography and dry-etching techniques. The WDM splitters were fabricated from two-dimensional photonic crystal waveguides. Transmission spectra were calculated by using finite-difference time-domain method. The WDM splitters can be used in infrared region. Such an approach to photonic element systems should enable new applications for designing components in photonic integrated circuits.
机译:由于其控制光波传播的能力,光子晶体具有许多潜在的应用。在本文中,我们研究了在波分复用(WDM)系统中实现的基于PC的光波导。提出了一种基于具有正方形点阵的PC波导耦合器的WDM分路器。通过使用时域有限差分法,对它们的波长复用特性进行了数值研究。通过电子束光刻和干法蚀刻技术在硅中制造了棒型光子晶体结构。 WDM分离器由二维光子晶体波导制成。使用时域有限差分法计算透射光谱。 WDM分离器可用于红外区域。这种用于光子元件系统的方法应当能够实现用于设计光子集成电路中的组件的新应用。

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