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Three-visible-light wave combiner based on photonic crystal waveguides

机译:基于光子晶体波导的三可见光波合成器

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We present a three-visible-light wave combiner based on two-dimensional photonic crystal waveguides whose widths are not integral multiples of the lattice period. The proposed device consists of two cascaded directional couplers. It combines three visible light waves with different wavelengths from three input ports into a single output port. As an example, a combiner for combining light waves of 635, 532, and 488 nm, which are commonly used as the three primary colors in laser display systems, is designed and demonstrated through the finite-difference time-domain method. The results show that the proposed device can perform efficient synthesis for three visible light waves with transmittance exceeding 89% for each wavelength and high ability in preventing the backward coupling of waves from different waveguides. The method for designing the combiner is useful for designing other waveguide couplers based on photonic crystals made of dispersion materials.
机译:我们提出了一种基于二维光子晶体波导的三可见光波合成器,其宽度不是晶格周期的整数倍。拟议的设备包括两个级联的定向耦合器。它将三个不同波长的可见光波从三个输入端口组合到一个输出端口。例如,通过有限差分时域方法设计并演示了一种用于合并在激光显示系统中通常用作三种原色的635、532和488 nm光波的合并器。结果表明,所提出的装置可以对三个可见光波进行有效的合成,每个波长的透射率超过89%,并且具有防止来自不同波导的波向后耦合的高能力。设计组合器的方法可用于设计其他基于由分散材料制成的光子晶体的波导耦合器。

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