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硅基二氧化硅偏振分束器的设计及误差分析 被引量:4
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作者 潘盼 李伶俐 蔡雪原 《激光与光电子学进展》 CSCD 北大核心 2017年第12期405-411,共7页
设计了一种非对称臂马赫-曾德尔干涉仪(MZI)型硅基二氧化硅偏振分束器(PBS),在1535~1565nm波长范围内,其偏振消光比大于20dB,插入损耗大于-0.5dB。采用有限差分-束传播法(FD-BPM)进行误差分析,分别计算了多模波导的宽度和长度以及非对... 设计了一种非对称臂马赫-曾德尔干涉仪(MZI)型硅基二氧化硅偏振分束器(PBS),在1535~1565nm波长范围内,其偏振消光比大于20dB,插入损耗大于-0.5dB。采用有限差分-束传播法(FD-BPM)进行误差分析,分别计算了多模波导的宽度和长度以及非对称臂的宽度和长度误差对偏振分束器性能的影响。仿真结果表明,多模波导长度和非对称臂长度误差分别小于±2μm和±4μm时,偏振分束器的消光比和插入损耗仍能保持较好的结果;而要保持20dB以上的偏振消光比,多模波导宽度误差应小于±500nm,非对称臂宽度误差应小于±4nm(宽臂)和±2.5nm(窄臂)。非对称臂宽度对工艺的要求比较高,拟利用热光效应改变波导折射率来补偿波导尺寸变化引起的相位误差,以便下一步制备出高性能的硅基二氧化硅偏振分束器。 展开更多
关键词 光学器件 硅基二氧化硅波导 偏振分 有限差分-束传播法 差分
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Optimization design of optical waveguide in mach-zehnder electro-optical polymer modulator 被引量:1
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作者 高原 张晓霞 廖进昆 《Optoelectronics Letters》 EI 2011年第1期1-4,共4页
In order to reduce transmission loss of the optical waveguide in Mach-Zehnder (M-Z) electro-optical (EO) polymer modulator,the basic iterative formula of semi-vector finite-difference beam propagation method (FD-BPM) ... In order to reduce transmission loss of the optical waveguide in Mach-Zehnder (M-Z) electro-optical (EO) polymer modulator,the basic iterative formula of semi-vector finite-difference beam propagation method (FD-BPM) is obtained from the scalar wave equation. The transition waveguide is combined with S-type bend branch waveguide for the M-Z EO modulator in the branch waveguide. The effects of structure parameters such as ridge width,length of the branch waveguide and interferometer spacing on the transmission loss are systematically studied by using the semi-vector FD-BPM method. The structure is optimized as an S-sine bend branch waveguide,with rib width w=7μm,length of branch waveguide L=1200μm and interferometer spacing G=22 μm. The results show that the optimized structure can reduce transmission loss to 0.083 dB,which have a certain reference value to the design of optical waveguide in M-Z polymer modulator. 展开更多
关键词 Beam propagation method Dense wavelength division multiplexing Finite difference method INTERFEROMETERS Light propagation Light transmission Optical waveguides Optimization Polymers Wave transmission Waveguides
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