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Investigation of ultra-thin waveguide arrays on a Bloch surface wave platform

机译:Bloch表面波平台上超薄波导阵列的研究

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Ultra-thin polymer optical waveguide couplers for integrated optics based on Bloch surface waves (BSWs) are presented. Desirable BSW guiding properties, such as low loss and long propagation distance, are observed. The waveguide thickness is on the order of lambda/15. At 1562 nm wavelength, a coupling length of 250 mu m is found for 3 mu m wide waveguides separated by 1 mu m. The second-order mode is also investigated; we show that the fundamental mode can be excited by the second-order mode. The effect of variations in the waveguide width, gap, and refractive index are theoretically investigated by studying their impacts on the coupling length. Results are promising for mode division multiplexing, optical sensors, and optical communications. (C) 2014 Optical Society of America
机译:提出了一种用于基于Bloch表面波(BSW)的集成光学器件的超薄聚合物光波导耦合器。观察到了理想的BSW引导特性,例如低损耗和长传播距离。波导厚度约为λ/ 15。在1562 nm波长处,对于3μm宽的波导(相距1μm),耦合长度为250μm。还研究了二阶模式。我们证明了基本模式可以被二阶模式激发。通过研究波导宽度,间隙和折射率变化对耦合长度的影响,可以从理论上研究其变化的影响。模分复用,光学传感器和光学通信的结果是有希望的。 (C)2014年美国眼镜学会

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