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反相电极聚合物定向耦合电光开关的优化设计
引用本文:郑传涛,马春生,闫欣,王现银,张大明.反相电极聚合物定向耦合电光开关的优化设计[J].光子学报,2009,38(12).
作者姓名:郑传涛  马春生  闫欣  王现银  张大明
作者单位:吉林大学集成光电子学国家重点联合实验室吉林大学试验区,长春,130012;吉林大学电子科学与工程学院,长春,130012
基金项目:国家自然科学基金,国家重点基础研究发展计划,教育部博士点新教师基金,吉林省科技发展计划青年科研基金 
摘    要:为了消除单节电极定向耦合电光开关的工艺误差对器件性能的不良影响,应用耦合模理论、电光调制理论、保角变换及镜像法,优化设计了一种两节交替反相电极聚合物定向耦合电光开关.模拟结果表明,该器件具有良好的开关性能:在1 550 nm的工作波长下,器件耦合区的长度为4 753.5 μm,交叉态电压为1.22 V,直通态电压为2.65 V,插入损耗小于2.21 dB,串扰小于-30 dB.通过微调状态电压,可以很容易地消除工艺误差对器件性能产生的不良影响.本文方法的设计结果与光束传播法的仿真结果符合得很好.

关 键 词:集成光学  电光开关  反相电极  制作公差  开关电压  插入损耗  串扰

Optimal Design of a Polymer Directional Coupler Electro-optic Switch Using Reversed Electrodes
ZHENG Chuan-tao,MA Chun-sheng,YAN Xin,WANG Xian-yin,ZHANG Da-ming.Optimal Design of a Polymer Directional Coupler Electro-optic Switch Using Reversed Electrodes[J].Acta Photonica Sinica,2009,38(12).
Authors:ZHENG Chuan-tao  MA Chun-sheng  YAN Xin  WANG Xian-yin  ZHANG Da-ming
Abstract:To eliminate the negative effect of the fabrication error on the performance for the directional coupler electro-optic switch with single-section electrode,the structure is designed,the parameters are optimized,and the characteristics are analyzed for a polymer directional coupler electro-optic switch with two-section reversed electrodes by using the coupled mode theory,electro-optic modulation theory,conformal transforming method and image method.Simulation shows that the designed device exhibits excellent switching functions.Under the operation wavelength of 1 550 nm,the coupling region length is 4 753.5 μm,the cross-state and bar-state voltages are about 1.22 V and 2.65 V,and the insertion loss and crosstalk are less than 2.21 dB and -30 dB,respectively.By slightly adjusting the state voltages,the blight of the fabrication errors on the switching characteristics can be easily eliminated.The calculation results of the presented technique are in good agreement with those of the beam propagation method (BPM).
Keywords:Integrated optics  Electro-optic switch  Reversed electrodes  Fabrication error  Switching voltage  Insertion loss  Crosstalk
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