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

机译:基于光子晶体微腔的三可见光波合成器

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We propose a three-visible-light wave combiner based on two-dimensional square-lattice photonic crystal (PhC) microcavities. A coupled-cavity waveguide is introduced to reduce the insertion losses for the three waves in the combiner. The transmission characteristic of light waves in PhCs with point defects is analyzed. As an example, a combiner for combining light waves of 488, 532, and 635 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 three visible light waves of 488, 532, and 635 nm are output at the same output port with transmittances of 97.6%, 98.1%, and 90.0%, respectively. The results show that the proposed device can perform efficient synthesis and the designing method can be applied in building other combiners based on PhCs made of dispersion materials. (C) 2015 Optical Society of America
机译:我们提出了一种基于二维方格光子晶体(PhC)微腔的三可见光波合成器。引入了耦合腔波导以减少组合器中三个波的插入损耗。分析了具有点缺陷的PhC中光波的传输特性。例如,通过有限差分时域方法设计并演示了一种组合器,用于组合在激光显示系统中通常用作三种原色的488、532和635 nm的光波。 488、532和635 nm的三个可见光波在同一输出端口输出,透射率分别为97.6%,98.1%和90.0%。结果表明,所提出的装置可以进行有效的合成,并且该设计方法可以应用于基于由分散材料制成的PhC构建其他组合器。 (C)2015年美国眼镜学会

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