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Vertical antiresonant reflecting optical waveguide coupler for three-dimensional optical interconnects: optimum design for large tolerance, high coupling efficiency, and short coupling length

机译:用于三维光学互连的垂直反共振反射光波导耦合器:针对大容差,高耦合效率和短耦合长度的最佳设计

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摘要

A compact antiresonant-reflecting-optical-waveguide- (ARROW-) type vertical coupler for three-dimensional optical interconnects was demonstrated. The coupler consists of stacked ARROW's channeled by the stripe lateral confinement structure, and each waveguide is completely separated by a thin metal film in the separation region. In the coupling region the intermediate cladding of a previous coupler was made of the same material as that of the first cladding or the core. However, we had to overcome the problem that both the high coupling efficiency and the large fabrication tolerance cannot be achieved simultaneously. Thus we incorporated an intermediate cladding made of a material different from that of the core and the first cladding. The refractive index and the thickness of the intermediate cladding were optimally designed to achieve large fabrication tolerance and a short coupling length with a high coupling efficiency. The coupling length was reduced from 4.1 to 0.8 mm, and a high coupling efficiency of 96% was experimentally demonstrated.
机译:对用于三维光学互连的紧凑型反共振反射光波导(ARROW)型垂直耦合器进行了演示。耦合器由带状横向限制结构引导的堆叠的ARROW's组成,每个波导在分离区域中被金属薄膜完全分离。在耦合区域中,先前耦合器的中间包层由与第一包层或芯相同的材料制成。但是,我们必须克服不能同时实现高耦合效率和大制造公差的问题。因此,我们合并了一个中间包层,该中间包层的材料与纤芯和第一包层的材料不同。优化设计中间包层的折射率和厚度,以实现较大的制造公差和较短的耦合长度,并具有较高的耦合效率。耦合长度从4.1毫米减少到0.8毫米,并且实验证明了96%的高耦合效率。

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