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Mode-converter and multiplexer based on SOI technology for few-mode fiber at 1550 nm

机译:基于SOI技术的模式转换器和多路复用器,用于1550 nm的少模光纤

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The Asymmetric Directional Coupler (ADC) based on SOI (Silicon-on-Insulator) technology converts and couples the fundamental mode to the first higher order mode. The ADC is designed to achieve phase-matching condition, which is accomplished when both propagation constants are equal in each waveguide arm. Devices are fabricated in a SOI wafer with a 220 nm thick silicon layer. The refractive indexes of Si and SiO_2 are n_(Si)=3.47 and n_(SiO2)=1.46 respectively. The access waveguides (W_1=0.45 μm) have been designed to propagate just the fundamental mode, TE_0. The optimum width for the second waveguide was chosen to achieve the phase-matching condition for the TE_1 mode, which corresponds to W_2=0.962 μm. The coupling to the input and output waveguides is achieved through grating couplers. The input grating coupler will need to couple the LP_(01) mode from the SSMF (Standard Single-Mode Fiber) to the TE_0 mode in the SOI waveguide; thus a typical design for a SOI coupler can be used. However, the output coupler must simultaneously couple the TE_0 and TE_1 modes in the SOI wide waveguide to the LP_(01) and LP_(11) modes in the FMF (Few-Mode Fiber). Input gratings are designed to have an area of 12x12 μm~2 and a period of Λ=610 nm in order to maximize the optical power coupled between the fiber and the waveguide for an incident angle of 10 degrees. Output gratings are designed with the same period but distinct area (12.5x12.5 μm~2) to correctly couple the LP_(01) and LP_(11) modes in the FMF.
机译:基于SOI(绝缘体上硅)技术的非对称定向耦合器(ADC)将基本模式转换并耦合到一阶高阶模式。 ADC被设计为达到相位匹配条件,当每个波导臂中的两个传播常数相等时就可以实现。器件在具有220 nm厚硅层的SOI晶圆中制造。 Si和SiO_2的折射率分别为n_(Si)= 3.47和n_(SiO2)= 1.46。接入波导(W_1 = 0.45μm)已被设计为仅传播基本模式TE_0。选择第二波导的最佳宽度以实现TE_1模式的相位匹配条件,该条件对应于W_2 = 0.962μm。输入和输出波导的耦合是通过光栅耦合器实现的。输入光栅耦合器需要将LP_(01)模式从SSMF(标准单模光纤)耦合到SOI波导中的TE_0模式。因此,可以使用SOI耦合器的典型设计。但是,输出耦合器必须同时将SOI宽波导中的TE_0和TE_1模式耦合到FMF(少量模式光纤)中的LP_(01)和LP_(11)模式。输入光栅被设计为具有12x12μm〜2的面积和Λ= 610 nm的周期,以便在入射角为10度时最大化耦合在光纤和波导之间的光功率。将输出光栅设计为具有相同的周期但面积不同(12.5x12.5μm〜2),以正确耦合FMF中的LP_(01)和LP_(11)模式。

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